Accelerating Or Decelerating The Ray Between The Hollow Devices Patents (Class 315/5.41)
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Patent number: 12127327Abstract: A linear accelerator head for use in a medical radiation therapy system can include a housing, an electron generator configured to emit electrons along a beam path, and a microwave generation assembly. The linear accelerator head may include a waveguide that is configured to contain a standing or travelling microwave. The waveguide can include a plurality of cells that are disposed adjacent one another, wherein each of the plurality of cells may define an aperture configured to receive electrons therethrough. The linear accelerator head can further include a converter and a primary collimator.Type: GrantFiled: March 27, 2023Date of Patent: October 22, 2024Assignee: RadiaBeam Technologies, LLCInventors: Ronald Agustsson, Robert Berry, Salime Boucher, Josiah Hartzell, Sergey Kutsaev, Jacob McNevin, Avinash Verma
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Patent number: 11877379Abstract: An apparatus for guiding, in particular directing or accelerating, charged particles (50), comprising: a substrate (110) having a surface (115); an optically thinner layer (120) formed on the surface (115); an inhomogeneous channel (130) which is formed by two mutually opposite delimiting structures on a side of the layer (120) that is opposite the substrate (110); and a radiation device which is designed to generate at least one pulsed laser beam (140) and inject the at least one pulsed laser beam (140) into the channel (130) from a side that is opposite the optically thinner layer (120). The layer (120) for the laser beam (140) is optically thin, and the delimiting structures have a high optical density in comparison with the layer (120). The delimiting structures are designed to guide the particles (50) by means of the laser beam (140) in the channel (130) and alternatingly focus them along the channel (130) and in at least one direction perpendicular to the channel (130).Type: GrantFiled: July 26, 2021Date of Patent: January 16, 2024Assignee: Technische Universität DarmstadtInventor: Uwe Niedermayer
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Patent number: 11627653Abstract: A linear accelerator head for use in a medical radiation therapy system can include a housing, an electron generator configured to emit electrons along a beam path, and a microwave generation assembly. The linear accelerator head may include a waveguide that is configured to contain a standing or travelling microwave. The waveguide can include a plurality of cells that are disposed adjacent one another, wherein each of the plurality of cells may define an aperture configured to receive electrons therethrough. The linear accelerator head can further include a converter and a primary collimator.Type: GrantFiled: November 16, 2020Date of Patent: April 11, 2023Assignee: RadiaBeam Technologies, LLCInventors: Ronald Agustsson, Robert Berry, Salime Boucher, Josiah Hartzell, Sergey Kutsaev, Jacob McNevin, Avinash Verma
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Patent number: 11559703Abstract: Described are devices, systems, and methods for modulating the spectral energy distribution produced by an x-ray source via control of the energy of the x-ray-generating electron beam, e.g., for energy-modulated radiation therapy or other purposes. In some embodiments, such energy modulation is achieved by an add-on device to a linear accelerator. Also disclosed are computational methods and computer program products for planning energy-modulated therapy.Type: GrantFiled: November 9, 2018Date of Patent: January 24, 2023Assignee: UNM Rainforest InnovationsInventors: Richard Shaw, Shuang Luan
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Patent number: 11397195Abstract: The present invention provides a core for an electric current detector in which a plurality of gaps can be formed while the paring of core pieces is maintained, and a method for manufacturing the same. A core for an electric current detector 10 according to the present invention includes: a pair of core pieces 20 and 23 that are obtained by cutting an annular core main body 12 in a radial direction at two positions and are arranged such that cross-sectional surfaces 21 and 24 are opposed to each other with a first gap 26 and a second gap 28 being interposed therebetween; and a first partial molding 30 and a second partial molding 40 that are made of resin and cover portions of the peripheral surfaces of the cross-sectional surfaces of the core pieces opposed to each other with the first gap and the second gap being interposed therebetween. The first partial molding includes a bridge portion 33 that serves as a connection portion and spans the gap.Type: GrantFiled: October 11, 2019Date of Patent: July 26, 2022Assignee: SHT CORPORATION LIMITEDInventors: Ai Nagano, Nobuhiro Kitai
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Patent number: 11366138Abstract: A core for an electric current detector comprises a pair of first and second core pieces (20), (23), wherein the first core piece has first opposed surfaces (21), (21) and the second core piece has second opposed surfaces (24), (24), the first and second opposed surfaces face to each other with a spacing between a first gap (26) and a second gap (28), respectively, and the first and second core pieces are covered by a resin-made first partial mold (30) on the area near and inclusive of the first gap and are covered by a resin-made second partial mold (40) on the area near and not inclusive of the second gap, wherein the second partial mold includes a second-1 molded member (41) on the first core piece side and a second-2 molded member (42) on the second core piece side.Type: GrantFiled: October 11, 2019Date of Patent: June 21, 2022Assignee: SHT CORPORATION LIMITEDInventors: Ai Nagano, Nobuhiro Kitai
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Patent number: 11031206Abstract: A photoinjector system containing modularly-structured waveguide-mode launcher, which is reversibly connected to the RF gun (containing a tubular construction formed with disattachably-affixed to one another structurally-complementary halves); and a solenoid magnet in operation enclosing such tubular structure in a central hollow. The resulting quality, power, and frequency rate of operation as well as cost of manufacturing and operation of the system are superior as compared with those of a related art system.Type: GrantFiled: November 14, 2019Date of Patent: June 8, 2021Assignees: Arizona Board of Regents on behalf of Arizona State University, TibaRay, Inc.Inventors: William (Bill) Graves, Vinod Bharadwaj, Valery Dolgashev
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Patent number: 10624199Abstract: A system for injecting radio frequency (RF) pulses into an RF linear accelerator (RF LINAC) cavity is described. In accordance with the description an RF power amplifying element, typically a compact planar triode (CPT), is directly mounted to an outside of a hermetically sealed RF cavity. The direct mounting of the RF power amplifying element places the antenna—responsible for coupling power into the RF cavity—physically on the RF cavity side of a hermetic high-voltage (HV) break. The RF input, RF circuitry, biasing circuitry, and RF power amplifier are all outside of the vacuum cavity region. The direct mounting arrangement facilitates easy inspection and replacement of the RF power amplifier, the RF input and biasing circuitry. The direct mounting arrangement also mitigates the deleterious effects of multipactoring associated with placing the RF power amplifier and associated RF circuitry in the vacuum environment of the RF LINAC cavity.Type: GrantFiled: November 3, 2017Date of Patent: April 14, 2020Assignee: Starfire Industries, LLCInventors: Robert A. Stubbers, Brian E. Jurczyk, Thomas J. Houlahan, Jr., James M. Potter
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Patent number: 10568196Abstract: A compact particle accelerator can include two or more cavities disposed along an axis of the particle accelerator, each of which is coupled to two or more drivers. The accelerator can also include a power supply coupled to the two or more drivers such that a particle beam traveling along the axis is accelerated. The power supply can be an interface with a commercial power outlet, battery power, or a combination thereof depending upon the use case. Example configurations of the accelerator include hand held or mobile devices that are capable of delivering up to and greater than a 1 MeV electron beam.Type: GrantFiled: November 21, 2017Date of Patent: February 18, 2020Assignee: TRIAD NATIONAL SECURITY, LLCInventors: Dinh Nguyen, Cynthia Buechler, Gregory Dale, John Lewellen
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Methods and systems for RF power generation and distribution to facilitate rapid radiation therapies
Patent number: 10485991Abstract: Methods and system for facilitating rapid radiation treatments are provided herein and relate in particular to radiation generation and delivery, power production and distribution, and electron source design. The methods and systems described herein are particularly advantageous when used with a compact high-gradient, very high energy electron (VHEE) accelerator and delivery system (and related processes) capable of treating patients from multiple beam directions with great speed, using all-electromagnetic or radiofrequency deflection steering is provided, that can deliver an entire dose or fraction of high-dose radiation therapy sufficiently fast to freeze physiologic motion, yet with a better degree of dose conformity or sculpting than conventional photon therapy.Type: GrantFiled: March 11, 2016Date of Patent: November 26, 2019Assignee: THE BOARD OF TRUSTEES OF THE LELAND STANFORD JUNIOR UNIVERSITYInventors: Sami Tantawi, Valery A. Dolgashev -
Patent number: 10373798Abstract: A multi charged particle beam inspection apparatus includes a plurality of sensors, arranged inside or on a periphery of a secondary electron image acquisition mechanism, to measure a plurality of interfering factors, a determination circuit to determine, for each interfering factor, whether change exceeding a corresponding threshold is a first case which returns to the original state within a predetermined time period, or a second case which does not return to the original state even if the predetermined time period has passed, and a comparison circuit to input a reference image of a region corresponding to the secondary electron image acquired, and compare the secondary electron image with the reference image, wherein in the case where change of the second case occurs, the secondary electron image acquisition mechanism suspends the acquisition operation of the secondary electron image, and calibrates a change amount of the multiple charged particle beams.Type: GrantFiled: February 22, 2018Date of Patent: August 6, 2019Assignee: NUFLARE TECHNOLOGY, INC.Inventor: Hidekazu Takekoshi
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Patent number: 10314157Abstract: Provided is a klynac including: a klystron input cell configured to form a first resonant circuit; a klystron output cell; and a plurality of linac cells configured to form a second resonant circuit with the klystron output cell.Type: GrantFiled: August 30, 2017Date of Patent: June 4, 2019Assignee: TRIAD NATIONAL SECURITY, LLCInventors: Bruce Carlsten, Kimberley Nichols
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Patent number: 10284154Abstract: A system for generating a radio frequency (RF) signal at a drive frequency and a high voltage. The system includes a RF amplifier to amplify the voltage of a drive signal having a selected RF frequency. The amplified drive signal is used to drive a resonator to generate the RF signal such that the resonant frequency is the same or substantially the same as the drive frequency. A resonance tuning controller compares the drive frequency and the resonant frequency. If the resonant frequency and drive frequency are different, a temperature changing element is controlled to either increase heat or decrease heat radiating toward a tuning component with a resonance parameter that varies with temperature. For example, the heat may change the capacitance of the tuning capacitor causing a change in the resonant frequency of the resonator.Type: GrantFiled: December 8, 2017Date of Patent: May 7, 2019Assignee: Agilent Technologies, Inc.Inventor: Michael Schoessow
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Patent number: 10088504Abstract: In an electric current detector according to the present invention, an annular core 2 having a magnetic gap G and a Hall element 41 which is located in the magnetic gap of the core 2 and detects a magnitude of an electric current passing through the core 2 are arranged in an outer case 1. Here, in the core 2, a mold resin portion 3 which covers a surface of the core 2 over part of an overall length along a magnetic path thereof is molded at one or a plurality of portions along the magnetic path to configure an integral core component, the core component being fixed into the outer case 1 in a state where a surface of the mold resin portion 3 makes contact with an inner surface of the outer case 1.Type: GrantFiled: March 31, 2015Date of Patent: October 2, 2018Assignee: SHT CORPORATION LIMITEDInventors: Hitoshi Yoshimori, Takashi Yoshimori
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Patent number: 9937362Abstract: The invention comprises a beam adjustment method and apparatus used to perform energy adjustments on circulating charged particles in a synchrotron previously accelerated to a starting energy with a traditional accelerator of the synchrotron. The beam adjustment system uses a radio-frequency modulated potential difference applied along a longitudinal path of the circulating charged particles to accelerate or decelerate the circulating charged particles. Optionally, the beam adjustment system phase shifts the applied radio-frequency field to accelerate or decelerate the circulating charged particles while tightening spatial distribution of a grouped bunch of the circulating charged particles. Optionally, the beam adjustment system simultaneously radially focuses the circulating charged particles using two or more gaps with focusing and/or defocusing edges.Type: GrantFiled: October 25, 2016Date of Patent: April 10, 2018Inventors: W. Davis Lee, Mark R. Amato, Scott Penfold
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Patent number: 9905349Abstract: There is provided a chip electronic component including: a magnetic body having an internal coil part embedded therein, wherein the magnetic body includes: a central portion provided inside of the internal coil part and including a core; and an outer peripheral portion provided outside of the central portion, the central portion and the outer peripheral portion having different magnetic permeabilities.Type: GrantFiled: April 21, 2015Date of Patent: February 27, 2018Assignee: SAMSUNG ELECTRO-MECHANICS CO., LTD.Inventors: Moon Soo Park, Jong Ho Lee, Dong Hwan Lee, Jin Ok Han, Tae Young Kim
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Patent number: 9860969Abstract: At the start of beam extraction, the amplitude value of an acceleration radio frequency voltage is held at a first amplitude value. When the irradiation dose stemming from beam extraction reaches a prescribed dose, the amplitude value of the acceleration radio frequency voltage applied to an accelerating cavity starts to be increased from the first amplitude value to a second amplitude value. When the irradiation dose reaches a target dose, the amplitude value is raised to and held at the second amplitude value. By the time the irradiation is restarted, the amplitude value of the acceleration radio frequency voltage applied to the accelerating cavity is reduced from the second amplitude value to the first amplitude value. At the start of beam extraction, the amplitude value is held at the first amplitude value.Type: GrantFiled: April 6, 2015Date of Patent: January 2, 2018Assignee: Hitachi, Ltd.Inventors: Kimiko Okazaki, Hideaki Nishiuchi, Kunio Moriyama
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Patent number: 9750123Abstract: Methods and apparatus are provided for generating an amplified pulsed radio frequency (RF) signal used by a particle accelerator. The particle accelerator can generate an attenuation profile. The particle accelerator can determine a waveform and a duration for a pulsed RF signal based on the attenuation profile. The particle accelerator can generate the pulsed RF signal having the waveform and the duration. The particle accelerator can generate an amplified pulsed RF signal using one or more amplifiers of the particle accelerator. The amplifiers can include a pulse forming network (PFN), where the PFN can include a plurality of stages and a plurality of PFN switches, and where PFN stage can include one or more capacitors and inductors. The PFN switches can control the PFN stages. The duration of the amplified pulsed RF signal can be based on settings of the plurality of PFN switches.Type: GrantFiled: August 1, 2016Date of Patent: August 29, 2017Assignee: The Boeing CompanyInventors: Bryant G. Heath, Henry F. Moeller, Jr., David B. Olsen, Dominic J. Kobbeman, Michael K. Strahan
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Patent number: 9655227Abstract: A slot-coupled CW standing wave multi-cell accelerating cavity. To achieve high efficiency graded beta acceleration, each cell in the multi-cell cavity may include different cell lengths. Alternatively, to achieve high efficiency with acceleration for particles with beta equal to 1, each cell in the multi-cell cavity may include the same cell design. Coupling between the cells is achieved with a plurality of axially aligned kidney-shaped slots on the wall between cells. The slot-coupling method makes the design very compact. The shape of the cell, including the slots and the cone, are optimized to maximize the power efficiency and minimize the peak power density on the surface. The slots are non-resonant, thereby enabling shorter slots and less power loss.Type: GrantFiled: June 5, 2015Date of Patent: May 16, 2017Assignee: JEFFERSON SCIENCE ASSOCIATES, LLCInventors: Shaoheng Wang, Robert Rimmer, Haipeng Wang
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Patent number: 9602087Abstract: A linear transformer driver includes at least one ferrite ring positioned to accept a load. The linear transformer driver also includes a first, second, and third power delivery module. The first power delivery module sends a first energy in the form of a first pulse to the load. The second power delivery module sends a second energy in the form of a second pulse to the load. The third power delivery module sends a third energy in the form of a third pulse to the load. The linear transformer driver is configured to form a flat-top pulse by the superposition of the first, second, and third pulses. The first, second, and third pulses have different frequencies.Type: GrantFiled: June 16, 2014Date of Patent: March 21, 2017Assignee: Sandia CorporationInventors: Michael G. Mazarakis, Alexander A. Kim, Vadim A. Sinebryukhov, Sergey N. Volkov, Sergey S. Kondratiev, Vitaly M. Alexeenko, Frederic Bayol, Gauthier Demol, William A. Stygar, Joshua Leckbee, Bryan V. Oliver, Mark L. Kiefer
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Patent number: 9531353Abstract: A switching arrangement for applying voltage pulses across a load, comprising a plurality of capacitive elements (C1-C9) connected in series, and a first switch arrangement (S) connected to the series connection to apply voltage pulses to the load, and a second switch arrangement (S1, S2) connected to a capacitive element of the series connection, such that one of the capacitive elements (C1) can be switched out of or switched into the series connection, in order to produce voltage pulses of respectively lower or higher levels, without the need to dissipate energy into a resistive load.Type: GrantFiled: June 29, 2011Date of Patent: December 27, 2016Assignee: E2V TECHNOLOGIES (UK) LIMITEDInventors: Stephen Mark Iskander, Michael John Bland, Paul Ridgwell
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Patent number: 9491842Abstract: The present disclosure discloses a method for controlling a standing wave accelerator and a system thereof. The method comprises: generating, by an electron gun, an electron beam; injecting the electron beam into an accelerating tube; and controlling a microwave power source to generate and input microwave with different frequencies into the accelerating tube, so that the accelerating tube switches between different resonant modes at a predetermined frequency to generate electron beams with corresponding energy. According to the above solution, it only needs to change the output frequency of the microwave power source in the process of adjusting energy, without making any change to the accelerating structure per se. Therefore, the method is easy to operate. In addition, the structure of the accelerating tube in the above system is simple, without adding a particular regulation apparatus.Type: GrantFiled: September 16, 2014Date of Patent: November 8, 2016Assignees: Nuctech Company Limited, Tsinghua UniversityInventors: Huaibi Chen, Jianping Cheng, Shuxin Zheng, Jiaru Shi, Chuanxiang Tang, Qingxiu Jin, Wenhui Huang, Yuzheng Lin, Dechun Tong, Shi Wang
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Patent number: 9478841Abstract: An RF generator has a hollow conductor having a conductive wall. The wall has a first slot, over which a first solid-state switch is arranged in order to apply a radiofrequency electrical voltage through the first slot.Type: GrantFiled: October 13, 2011Date of Patent: October 25, 2016Assignee: SIEMENS AKTIENGESELLSCHAFTInventors: Oliver Heid, Timothy Hughes
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Patent number: 9392681Abstract: Borehole tools and methods for analyzing earth formations are disclosed herein. An example borehole tool disclosed herein includes an RF particle accelerator. The particle accelerator includes an accelerator waveguide for accelerating electrons. The borehole tool also includes a power amplification circuit that is based on a wide bandgap semiconductor material, such as a combination of gallium nitride (GaN) and aluminum gallium nitride (AlGaN). The power amplification circuit amplifies an initial input RF signal and provides a driving RF output signal to drive acceleration of the electrons within the accelerator waveguide.Type: GrantFiled: August 3, 2012Date of Patent: July 12, 2016Assignee: Schlumberger Technology CorporationInventor: Tancredi Botto
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Patent number: 9386682Abstract: A microwave circuit for a linear accelerator has multiple metallic cell sections, a pair of distribution waveguide manifolds, and a sequence of feed arms connecting the manifolds to the cell sections. The distribution waveguide manifolds are connected to the cell sections so that alternating pairs of cell sections are connected to opposite distribution waveguide manifolds. The distribution waveguide manifolds have concave modifications of their walls opposite the feed arms, and the feed arms have portions of two distinct widths. In some embodiments, the distribution waveguide manifolds are connected to the cell sections by two different types of junctions adapted to allow two frequency operation.Type: GrantFiled: July 9, 2015Date of Patent: July 5, 2016Assignee: The Board of Trustees of the Leland Stanford Junior UniversityInventors: Sami G. Tantawi, Zenghai Li, Philipp Borchard
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Patent number: 9380695Abstract: A high power RF traveling wave accelerator structure includes a symmetric RF feed, an input matching cell coupled to the symmetric RF feed, a sequence of regular accelerating cavities coupled to the input matching cell at an input beam pipe end of the sequence, one or more waveguides parallel to and coupled to the sequence of regular accelerating cavities, an output matching cell coupled to the sequence of regular accelerating cavities at an output beam pipe end of the sequence, and output waveguide circuit or RF loads coupled to the output matching cell. Each of the regular accelerating cavities has a nose cone that cuts off field propagating into the beam pipe and therefore all power flows in a traveling wave along the structure in the waveguide.Type: GrantFiled: June 4, 2015Date of Patent: June 28, 2016Assignee: The Board of Trustees of the Leland Stanford Junior UniversityInventor: Valery A. Dolgashev
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Patent number: 9360038Abstract: Disclosed herein is a mounting mechanism such as a drift tube mounting mechanism for mounting a drift tube provided in a drift tube accelerator vessel 10 via an elongate holding element 14. The mounting mechanism comprises a biasing mechanism comprising one or more disc spring members 46 for axially biasing the elongate holding element 14 with respect to the vessel towards a mounting position. The mounting mechanism further comprises a screw 58 having a head portion 60 and a shaft portion, said shaft portion comprising a threaded portion 64 for screwing into the elongate holding element 14. The mounting mechanism further comprises a bushing 66 comprising a sleeve portion 68 receiving at least a part of the screw shaft and separating the one or more disc spring members 46 from said screw shaft portion. The screw head portion 60 is configured to receive the axial biasing force generated by the one or more disc spring members 46.Type: GrantFiled: May 18, 2010Date of Patent: June 7, 2016Assignee: CERN—European Organization for Nuclear ResearchInventors: Suitbert Ramberger, Pierre Bourquin, Yves Cuvet, Maurizio Vretenar
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Patent number: 9031200Abstract: The disclosure relates to systems and methods for interleaving operation of a standing wave linear accelerator (LINAC) for use in providing electrons of at least two different energy ranges, which can be contacted with x-ray targets to generate x-rays of at least two different energy ranges. The LINAC can be operated to output electrons at different energies by varying the power of the electromagnetic wave input to the LINAC, or by using a detunable side cavity which includes an activatable window.Type: GrantFiled: September 11, 2012Date of Patent: May 12, 2015Assignee: Accuray IncorporatedInventors: Ching-Hung Ho, Stephen Wah-Kwan Cheung, Roger Heering Miller, Juwen Wang
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Patent number: 8878432Abstract: A RF accelerator system includes an accelerator, a RF source coupled to the accelerator for providing RF power to the accelerator, a control for adjusting a frequency of the RF power provided by the RF source through a frequency range, and a sensor for sensing a response resulted from an operation of the accelerator based at least in part on the adjusted frequency of the RF power through the frequency range. A method of diagnosing a RF spectrum in an accelerator system includes providing RF power to an accelerator, adjusting a frequency of the RF power through a frequency range, and sensing a response resulted from an operation of the accelerator, the response being based at least in part on the adjusted frequency of the RF power through the frequency range.Type: GrantFiled: August 20, 2012Date of Patent: November 4, 2014Assignee: Varian Medical Systems, Inc.Inventors: Gongyin Chen, John C. Turner
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Patent number: 8847489Abstract: A low-voltage, multi-beam, multi-MW RF source that operates at a voltage less than or equal to approximately 60 kV and generates at least one MW. The RF source includes a cathode configured to generate a plurality of beamlets. An input cavity and output cavity are common to the plurality of beamlets. A plurality of gain cavities are provided between the input and output cavities, each having a plurality of openings corresponding to the plurality of beamlets. The power source may further include a plurality of cathodes, each cathode generating a plurality of beamlets, wherein the input and output cavities are common to the plurality of beamlets from each of the plurality of cathodes, and a separate set of gain cavities are provided for each cathode. A single cathode version generates approximately 2.5 MW, and a four cathode version having four independent cavity systems and a common magnetic system generates approximately 10 MW.Type: GrantFiled: October 20, 2010Date of Patent: September 30, 2014Assignee: Omega P-Inc.Inventors: Vladimir Teryaev, Vyacheslav P. Yakovlev, Nikolay Solyak, Sergey Y. Kazakov
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Publication number: 20140191654Abstract: A microwave circuit for a linear accelerator includes multiple monolithic metallic cell plates stacked upon each other so that the beam axis passes vertically through a central acceleration cavity of each plate. Each plate has a directional coupler with coupling arms. A first coupling slot couples the directional coupler to an adjacent directional coupler of an adjacent cell plate, and a second coupling slot couples the directional coupler to the central acceleration cavity. Each directional coupler also has an iris protrusion spaced from corners joining the arms, a convex rounded corner at a first corner joining the arms, and a corner protrusion at a second corner joining the arms.Type: ApplicationFiled: March 12, 2014Publication date: July 10, 2014Inventors: Sami G. Tantawi, Jeffrey Neilson
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Publication number: 20140185775Abstract: A standing wave electron linear accelerating apparatus and a method thereof are disclosed. The apparatus comprises an electron gun configured to generate electron beams; a pulse power source configured to provide a primary pulse power signal; a power divider coupled downstream from the pulse power source and configured to divide the primary pulse power signal outputted from the pulse power source into a first pulse power signal and a second pulse power signal; a first accelerating tube configured to accelerating the electron beams with the first pulse power signal; a second accelerating tube configured to accelerate the electron beams with the second pulse power signal; a phase shifter configured to continuously adjust a phase difference between the first pulse power signal and the second pulse power signal so as to generate accelerated electron beams with continuously adjustable energy at output of the second accelerating tube.Type: ApplicationFiled: December 20, 2013Publication date: July 3, 2014Inventors: Chuanxiang TANG, Zhe ZHANG, Qingxiu JIN, Jiaru SHI, Huaibi CHEN, Wenhui HUANG, Shuxin ZHENG, Yaohong LIU
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Patent number: 8760050Abstract: An energy switch assembly includes probe components that can undergo and survive elevated temperatures of a bake-out procedure, and drive components that have capabilities of continuous positioning a probe throughout the stroke of the probe. The drive components can be removable from the probe components and replaceable without breaking the vacuum of the accelerator guide assembly.Type: GrantFiled: September 28, 2009Date of Patent: June 24, 2014Assignee: Varian Medical Systems, Inc.Inventors: Stephen Mohr, Christopher Patane, David H. Whittum
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Patent number: 8736169Abstract: An apparatus for generating an electron beam is disclosed to reduce emittance of an electron beam. The apparatus includes: a housing including a rear portion where an electron beam is generated, a front portion having an electron beam discharge hole for discharging the electron beam to the exterior, and a side portion connecting the rear portion and the front portion, the side portion having a first hole and an opposite side portion, facing the first hole, having a second hole in order to reduce asymmetry of an electric field caused by the first hole; and a waveguide installed on the side portion to supply an electromagnetic wave to the interior of the housing through the first hole, wherein the electron beam is generated by laser incident to the interior of the housing and accelerated by the electromagnetic wave supplied to the interior of the housing.Type: GrantFiled: August 10, 2010Date of Patent: May 27, 2014Assignee: Postech Academy-Industry FoundationInventors: Yong Woon Park, Sung Ju Park, In Soo Ko, Chang Bum Kim, Ju Ho Hong, Sung Ik Moon
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Patent number: 8674630Abstract: An on-axis rf power coupler for a superconducting particle accelerator includes a coaxial coupler tube that passes through a rf waveguide stub connected to a rf power source. The coupler tube is movable in translation along the axis of the beam path by a piezoelectric drive to permit variation of the coupling between the rf power source and the resonant signal in the accelerator. A tubular rf window extending through the waveguide stub, together with a vacuum bellows assembly connected to the coupler tube, isolate the vacuum inside the accelerator cavity from the vacuum in the rf waveguide and stub. A choke joint in the wall of the waveguide selectively passes unwanted HOM signals out of the waveguide stub and away from the accelerator cavity, where they are dissipated by ferrite tiles on the coupler tube. The upstream end of the coupler tube and a tubular extension of the accelerator cavity form a coaxial line for introducing rf power into the accelerator.Type: GrantFiled: October 27, 2012Date of Patent: March 18, 2014Inventor: Wayne Douglas Cornelius
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Publication number: 20140049158Abstract: A RF accelerator system includes an accelerator, a RF source coupled to the accelerator for providing RF power to the accelerator, a control for adjusting a frequency of the RF power provided by the RF source through a frequency range, and a sensor for sensing a response resulted from an operation of the accelerator based at least in part on the adjusted frequency of the RF power through the frequency range. A method of diagnosing a RF spectrum in an accelerator system includes providing RF power to an accelerator, adjusting a frequency of the RF power through a frequency range, and sensing a response resulted from an operation of the accelerator, the response being based at least in part on the adjusted frequency of the RF power through the frequency range.Type: ApplicationFiled: August 20, 2012Publication date: February 20, 2014Inventors: Gongyin CHEN, John C. TURNER
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Patent number: 8610352Abstract: A particle accelerator device structured and arranged for use in a subterranean environment. The particle accelerator device comprising: one or more resonant Photonic Band Gap (PBG) cavity, the one or more resonant PBG cavity is capable of providing localized, resonant electro-magnetic (EM) fields so as to one of accelerate, focus or steer particle beams of one of a plurality of electrons or a plurality of ions. Further, the particle accelerator device may provide for the one or more resonant PBG cavity to include a geometry and one or more material that is optimized in terms of RF power losses, wherein the optimization provides for a PBG cavity quality factor significantly higher than that of an equivalent normally conducting pill-box cavity.Type: GrantFiled: September 15, 2008Date of Patent: December 17, 2013Assignee: Schlumberger Technology CorporationInventors: Tancredi Botto, Martin Poitzsch
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Patent number: 8598790Abstract: Electron accelerator of the re-circulating type, having a resonant coaxial cavity presenting an outer cylindrical conductor of axis A and a coaxial inner cylindrical conductor, an electron gun for injecting electrons into the cavity following a radial direction and into a median plane of the cavity, an RF system capable of accelerating the injected electrons following a trajectory into the median plane which has the shape of a flower centered on the axis A, deflecting magnets disposed into the median plane externally to the cavity for redirecting electrons back towards the axis A. The RF system includes final power amplifiers, each amplifier being directly coupled to the cavity through its own individual inductive loop and each two of these loops being physically spaced apart from each other by an angle alpha, such that alpha is not an integer multiple of 90 degrees.Type: GrantFiled: April 6, 2012Date of Patent: December 3, 2013Assignee: Ion Beam Applications, S.A.Inventor: Michel Abs
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Patent number: 8463342Abstract: Superconducting rf is limited by a wide range of failure mechanisms inherent in the typical manufacture methods. This invention provides a method for fabricating superconducting rf structures comprising coating the structures with single atomic-layer thick films of alternating chemical composition. Also provided is a cavity defining the invented laminate structure.Type: GrantFiled: October 6, 2008Date of Patent: June 11, 2013Assignee: Uchicago Argonne, LLCInventors: James H. Norem, Michael J. Pellin
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Publication number: 20130015763Abstract: A RF generator includes a structure having an input section, an output section, and an opening extending between the input section and the output section, wherein the output section has a first cavity and a second cavity, and wherein the first and second cavities are spaced apart from each other so that they are electromagnetically uncoupled from each other. A method of providing RF energy, includes receiving an electron beam, providing a first RF energy through a first cavity, wherein the first RF energy is generated using the electron beam, and providing a second RF energy through a second cavity, wherein the second RF energy is generated using the electron beam, wherein the first cavity and the second cavity are spaced apart from each other so that they are electromagnetically uncoupled from each other.Type: ApplicationFiled: May 5, 2009Publication date: January 17, 2013Applicant: Varian Medical Systems, Inc.Inventors: Glenn P. Scheitrum, George Caryotakis
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Patent number: 8330372Abstract: A rapidly twisted electromagnetic accelerating structure includes a waveguide body having a central axis, one or more helical channels defined by the body and disposed around a substantially linear central axial channel, with central portions of the helical channels merging with the linear central axial channel. The structure propagates electromagnetic waves in the helical channels which support particle beam acceleration in the central axial channel at a phase velocity equal to or slower than the speed of light in free space. Since there is no variation in the shape of the transversal cross-section along the axis of the structure, inexpensive mechanical fabrication processes can be used to form the structure, such as extrusion, casting or injection molding. Also, because the field and frequency of the resonant mode depend on the whole structure rather than on dimensional tolerances of individual cells, no tuning of individual cells is needed.Type: GrantFiled: May 21, 2010Date of Patent: December 11, 2012Assignee: UT-Battelle, LLCInventors: Yoon W. Kang, Aly E. Fathy, Joshua L. Wilson
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Patent number: 8232749Abstract: A pair of cavities defined within a hollow elongate accelerator body include a first resonant cavity having a first resonant slot through an outer wall thereof, and a second resonant cavity having a second resonant slot through an outer wall thereof. The first resonant slot and the second resonant slot are separated by a void region that extends between the outer wall of the first cavity and the outer wall of the second cavity and is bounded in part by an inner surface of the hollow elongate member. The first and second cavities are coupled to each other through a dual slot coupling structure that includes the first resonant slot, the void region, and the second resonant slot.Type: GrantFiled: April 5, 2010Date of Patent: July 31, 2012Assignee: Far-Tech, Inc.Inventors: Nikolai Barov, Roger H Miller
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Publication number: 20120133281Abstract: An apparatus for generating an electron beam is disclosed to reduce emittance of an electron beam. The apparatus includes: a housing including a rear portion where an electron beam is generated, a front portion having an electron beam discharge hole for discharging the electron beam to the exterior, and a side portion connecting the rear portion and the front portion, the side portion having a first hole and an opposite side portion, facing the first hole, having a second hole in order to reduce asymmetry of an electric field caused by the first hole; and a waveguide installed on the side portion to supply an electromagnetic wave to the interior of the housing through the first hole, wherein the electron beam is generated by laser incident to the interior of the housing and accelerated by the electromagnetic wave supplied to the interior of the housing.Type: ApplicationFiled: August 10, 2010Publication date: May 31, 2012Applicant: POSTECH ACADEMY-INDUSTRY FOUNDATIONInventors: Yong Woon Park, Sung Ju Park, In Soo Ko, Chang Bum Kim, Ju Ho Hong, Sung Ik Moon
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Patent number: 8089222Abstract: A fast electromagnet device (140) receives a high voltage from a pulse power supply through a coaxial cable and excites an electromagnet at high speed, so as to bend a charged particle beam. The fast electromagnet device (140) includes a kicker magnet (150) and an auxiliary circuit (160). The kicker magnet (150) is equivalent to a circuit element of a lumped constant circuit, is formed with a space penetrating in the traveling direction of the charged particle beams, instantaneously generates a magnetic field in the penetrated space with a high voltage applied, and bends the charged particle beams passing through the penetrated space. The auxiliary circuit (160) constitutes a matching circuit in combination with the kicker magnet (150), so that the input impedance of the matching circuit and the characteristic impedance of the coaxial cable connected to the input terminal of the matching circuit are matched.Type: GrantFiled: July 4, 2007Date of Patent: January 3, 2012Assignee: Osaka UniversityInventors: Toshiyuki Oki, Takahisa Itahashi, Yoshitaka Kuno
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Patent number: 7999239Abstract: Techniques for reducing an electrical stress in a acceleration/deceleration system are disclosed. In one particular exemplary embodiment, the techniques may be realized as an acceleration/deceleration system. The acceleration/deceleration system may comprise an acceleration column including a plurality of electrodes having apertures through which a charged particle beam may pass. The acceleration/deceleration system may also comprise a plurality of voltage grading components respectively electrically coupled to the plurality of electrodes. The acceleration/deceleration system may further comprise a plurality of insulated conductors disposed proximate the plurality of voltage grading components to modify an electrical field about the plurality of voltage grading components.Type: GrantFiled: January 2, 2008Date of Patent: August 16, 2011Assignee: Varian Semiconductor Equipment Associates, Inc.Inventors: Kasegn D. Tekletsadik, Russell J. Low
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Patent number: 7973485Abstract: A particle controller is disclosed. In some embodiments, a particle controller includes an input port configured to receive a particle stream and a set of cells configured to form a tube through which at least a portion of the particles comprising the particle stream are directed. In some such cases, each cell in the set of cells comprises at least a portion of a semiconductor die.Type: GrantFiled: May 20, 2008Date of Patent: July 5, 2011Assignee: Silicon Accelerators, IncInventors: Sammy Karl Brown, Alok Mohan
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Publication number: 20110074288Abstract: An energy switch assembly includes probe components that can undergo and survive elevated temperatures of a bake-out procedure, and drive components that have capabilities of continuous positioning a probe throughout the stroke of the probe. The drive components can be removable from the probe components and replaceable without breaking the vacuum of the accelerator guide assembly.Type: ApplicationFiled: September 28, 2009Publication date: March 31, 2011Applicant: Varian Medical Systems, Inc.Inventors: Stephen Mohr, Christopher Patane, David H. Whittum
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Patent number: 7898193Abstract: A slot resonance coupled, linear standing wave particle accelerator. The accelerator includes a series of resonant accelerator cavities positioned along a beam line, which are connected by resonant azimuthal slots formed in interior walls separating adjacent cavities. At least some of the slots are resonant at a frequency comparable to the resonant frequency of the cavities. The resonant slots are offset from the axis of the accelerator and have a major dimension extending in a direction transverse to the radial direction with respect to the accelerator axis. The off-axis resonant slots function to magnetically couple adjacent cavities of the accelerator while also advancing the phase difference between the standing wave in adjacent cavities by 180 degrees in addition to the 180 degree phase difference resulting from coupling of the standing wave in each cavity with the adjacent slot, such that the signals in each cavity are in phase with one another and each cavity functions as a live accelerating cavity.Type: GrantFiled: June 4, 2008Date of Patent: March 1, 2011Assignee: Far-Tech, Inc.Inventors: Roger H. Miller, Nikolai Barov
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Patent number: 7884333Abstract: A new type of structure for the deflection and crabbing of particle bunches in particle accelerators comprising a number of parallel transverse electromagnetic (TEM)-resonant) lines operating in opposite phase from each other. Such a structure is significantly more compact than conventional crabbing cavities operating the transverse magnetic TM mode, thus allowing low frequency designs.Type: GrantFiled: September 25, 2008Date of Patent: February 8, 2011Assignee: Jefferson Science Associates, LLCInventor: Jean Delayen
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Patent number: 7820986Abstract: Techniques for controlling a charged particle beam are disclosed. In one particular exemplary embodiment, the techniques may be realized as a charged particle acceleration/deceleration system. The charged particle acceleration/deceleration system may comprise an acceleration column. The acceleration column may comprise a plurality of electrodes having apertures through which a charged particle beam may pass. The charged particle acceleration/deceleration system may also comprise a plurality of resistors electrically coupled to the plurality of electrodes. The charged particle acceleration/deceleration system may further comprise a plurality of switches electrically coupled to the plurality of electrodes and the plurality of resistors, each of the plurality of switches may be configured to be selectively switched respectively in a plurality of operation modes.Type: GrantFiled: September 13, 2007Date of Patent: October 26, 2010Assignee: Varian Semiconductor Equipment Associates, Inc.Inventors: Piotr R. Lubicki, Russell J. Low, Joseph C. Olson, Anthony Renau