Patents Represented by Attorney William C. Daubenspeck
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Patent number: 6963816Abstract: A multi-channel spectrometer and a light source are used to measure both the emitted and the reflected light from a surface which is at an elevated temperature relative to its environment. In a first method, the temperature of the surface and emissivity in each wavelength is calculated from a knowledge of the spectrum and the measurement of the incident and reflected light. In the second method, the reflected light is measured from a reference surface having a known reflectivity and the same geometry as the surface of interest and the emitted and the reflected light are measured for the surface of interest. These measurements permit the computation of the emissivity in each channel of the spectrometer and the temperature of the surface of interest.Type: GrantFiled: September 2, 2003Date of Patent: November 8, 2005Assignee: The United States of America as represented by the United States Department of EnergyInventor: Peter Poulsen
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Patent number: 6960311Abstract: An improved radiation shielding material and storage systems for radioactive materials incorporating the same. The PYRolytic Uranium Compound (“PYRUC”) shielding material is preferably formed by heat and/or pressure treatment of a precursor material comprising microspheres of a uranium compound, such as uranium dioxide or uranium carbide, and a suitable binder. The PYRUC shielding material provides improved radiation shielding, thermal characteristic, cost and ease of use in comparison with other shielding materials. The shielding material can be used to form containment systems, container vessels, shielding structures, and containment storage areas, all of which can be used to house radioactive waste. The preferred shielding system is in the form of a container for storage, transportation, and disposal of radioactive waste. In addition, improved methods for preparing uranium dioxide and uranium carbide microspheres for use in the radiation shielding materials are also provided.Type: GrantFiled: April 15, 2002Date of Patent: November 1, 2005Assignee: The United States of America as represented by the United States Department of EnergyInventors: Steven M. Mirsky, Stephen J. Krill, Alexander P. Murray
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Patent number: 6876723Abstract: A pump-probe scheme measures the rise time of ultrafast x-ray pulses. Conventional high speed x-ray diagnostics (x-ray streak cameras, PIN diodes, diamond PCD devices) do not provide sufficient time resolution to resolve rise times of x-ray pulses on the order of 50 fs or less as they are being produced by modern fast x-ray sources. Here, we are describing a pump-probe technique that can be employed to measure events where detector resolution is insufficient to resolve the event. The scheme utilizes a diamond plate as an x-ray transducer and a p-polarized probe beam.Type: GrantFiled: July 1, 2003Date of Patent: April 5, 2005Assignee: The United States of America as represented by the Department of EnergyInventors: Peter M. Celliers, Franz A. Weber, Stephen J. Moon
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Patent number: 6847455Abstract: Displacement measuring interferometer systems and methods are disclosed. One or more acousto-optic modulators for receiving a laser light beam from a laser light source can be utilized to split the laser light beam into two or more laser light beams, while spatially separating frequencies thereof. One or more reflective mechanisms can be utilized to reflect one or more of the laser light beams back to the acousto-optic modulator. Interference of two or more of the laser light beams generally at the acousto-optic modulator can provide an interfered laser light beam thereof. A detector for receiving the interfered laser light beam can be utilized to provide interferometer measurement data.Type: GrantFiled: September 26, 2002Date of Patent: January 25, 2005Assignee: The United States of America as represented by the Department of EnergyInventors: Tony L. Schmitz, John F. Beckwith
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Patent number: 6844561Abstract: A rotating aperture system includes a low-pressure vacuum pumping stage with apertures for passage of a deuterium beam. A stator assembly includes holes for passage of the beam. The rotor assembly includes a shaft connected to a deuterium gas cell or a crossflow venturi that has a single aperture on each side that together align with holes every rotation. The rotating apertures are synchronized with the firing of the deuterium beam such that the beam fires through a clear aperture and passes into the Xe gas beam stop. Portions of the rotor are lapped into the stator to improve the sealing surfaces, to prevent rapid escape of the deuterium gas from the gas cell.Type: GrantFiled: October 31, 2002Date of Patent: January 18, 2005Assignee: The United States of America as represented by the United States Department of EnergyInventors: Brian Rusnak, James M. Hall, Stewart Shen, Richard L. Wood
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Patent number: 6753741Abstract: Dynamic time expansion or compression of a small-amplitude input signal generated with an initial scale is performed using a nonlinear waveguide. A nonlinear waveguide having a variable refractive index is connected to a bias voltage source having a bias signal amplitude that is large relative to the input signal to vary the reflective index and concomitant speed of propagation of the nonlinear waveguide and an electrical circuit for applying the small-amplitude signal and the large amplitude bias signal simultaneously to the nonlinear waveguide. The large amplitude bias signal with the input signal alters the speed of propagation of the small-amplitude signal with time in the nonlinear waveguide to expand or contract the initial time scale of the small-amplitude input signal.Type: GrantFiled: November 5, 2001Date of Patent: June 22, 2004Assignee: The United States of America as represented by the United States Department of EnergyInventors: Alp T. Findikoglu, Sangkoo F. Hahn, Quanxi Jia
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Patent number: 6738399Abstract: The present invention provides an edge cladding for a slab laser, the edge cladding comprising a cooling channel system therein.Type: GrantFiled: May 17, 2001Date of Patent: May 18, 2004Assignee: The United States of America as represented by the United States Department of EnergyInventors: Georg F. Albrecht, Raymond J. Beach, Richard W. Solarz
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Patent number: 6738400Abstract: A cooling structure (16) for use inside a ceramic cylindrical tube (11) of a metal vapor laser (10) to cool the plasma in the tube (11), the cooling structure (16) comprising a plurality of circular metal members (17, 31) and mounting members (18, 34) that position the metal members (17, 31) coaxially in the tube (11) to form an annular lasing volume, with the metal members (17, 31) being axially spaced from each other along the length of the tube (11) to prevent the metal members from shorting out the current flow through the plasma in the tube (11) and to provide spaces through which the heat from localized hot spots in the plasma may radiate to the other side of the tube (11).Type: GrantFiled: January 5, 1996Date of Patent: May 18, 2004Assignee: The United States of America as represented by the United States Department of EnergyInventors: Jerome P. Hall, Terry W. Alger, Andrew T. Anderson, Phillip A. Arnold
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Patent number: 6728284Abstract: A multi-stage magnetic modulator provides a pulse train of ±40 kV electrical pulses at a 5-7 kHz repetition rate to a metal vapor laser. A fractional turn transformer steps up the voltage by a factor of 80 to 1 and magnetic pulse compression is used to reduce the pulse width of the pulse train. The transformer is fabricated utilizing a rod and plate stack type of construction to achieve a high packing factor. The pulses are controlled by an SCR stack where a plurality of SCRs are electrically connected in parallel, each SCR electrically connected to a saturable inductor, all saturable inductors being wound on the same core of magnetic material for enhanced power handling characteristics.Type: GrantFiled: June 8, 1993Date of Patent: April 27, 2004Assignee: The United States of America as represented by the United States Department of EnergyInventors: Daniel L. Birx, Don G. Ball, Edward G. Cook
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Patent number: 6696560Abstract: This invention provides methods and compositions for altering the growth, organization, and differentiation of plant tissues. The invention is based on the discovery that, in plants, genetically altering the levels of Retinoblastoma-related gene (RRB) activity produces dramatic effects on the growth, proliferation, organization, and differentiation of plant meristem.Type: GrantFiled: March 16, 2000Date of Patent: February 24, 2004Assignee: The United States of America as represented by the United States Department of EnergyInventors: Tim Durfee, Heidi Feiler, Wilhelm Gruissem, Susan Jenkins, Judith Roe, Patricia Zambryski
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Patent number: 6678351Abstract: A method of imaging an object by generating laser pulses with a short-pulse, high-power laser. When the laser pulse strikes a conductive target, bremsstrahlung radiation is generated such that hard ballistic high-energy electrons are formed to penetrate an object. A detector on the opposite side of the object detects these electrons. Since laser pulses are used to form the hard x-rays, multiple pulses can be used to image an object in motion, such as an exploding or compressing object, by using time gated detectors. Furthermore, the laser pulses can be directed down different tubes using mirrors and filters so that each laser pulse will image a different portion of the object.Type: GrantFiled: May 4, 2000Date of Patent: January 13, 2004Assignee: The United States of America as represented by the United States Department of EnergyInventors: Michael D. Perry, Joseph A. Sefcik
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Patent number: 6660414Abstract: A dielectric thin film material for high frequency use, including use as a capacitor, and having a low dielectric loss factor is provided, the film comprising a composition of tungsten-doped barium strontium titanate of the general formula (BaxSr1−x)TiO3, where X is between about 0.5 and about 1.0. Also provided is a method for making a dielectric thin film of the general formula (BaxSr1−x)TiO3 and doped with W, where X is between about 0.5 and about 1.0, a substrate is provided, TiO2, the W dopant, Ba, and optionally Sr are deposited on the substrate, and the substrate containing TiO2, the W dopant, Ba, and optionally Sr is heated to form a low loss dielectric thin film.Type: GrantFiled: April 26, 1999Date of Patent: December 9, 2003Assignee: U.S. Department of EnergyInventors: Xiao-Dong Xiang, Hauyee Chang, Chen Gao, Ichiro Takeuchi, Peter G. Schultz
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Patent number: 6605901Abstract: An apparatus and method to contain plasma at optimal fill capacity of a metallic container is disclosed. The invention includes the utilization of anodized layers forming the internal surfaces of the container volume. Bias resistors are calibrated to provide constant current at variable voltage conditions. By choosing the appropriate values of the bias resistors, the voltages of the metallic container relative to the voltage of an anode are adjusted to achieve optimal plasma fill while minimizing the chance of reaching the breakdown voltage of the anodized layer.Type: GrantFiled: January 3, 2002Date of Patent: August 12, 2003Assignee: The United States of America as represented by the Department of EnergyInventors: Mark A. Rhodes, Scott N. Fochs
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Patent number: 6599490Abstract: An improved radiation shielding material and storage systems for radioactive materials incorporating the same. The PYRolytic Uranium Compound (“PYRUC”) shielding material is preferably formed by heat and/or pressure treatment of a precursor material comprising microspheres of a uranium compound, such as uranium dioxide or uranium carbide, and a suitable binder. The PYRUC shielding material provides improved radiation shielding, thermal characteristic, cost and ease of use in comparison with other shielding materials. The shielding material can be used to form containment systems, container vessels, shielding structures, and containment storage areas, all of which can be used to house radioactive waste. The preferred shielding system is in the form of a container for storage, transportation, and disposal of radioactive waste. In addition, improved methods for preparing uranium dioxide and uranium carbide microspheres for use in the radiation shielding materials are also provided.Type: GrantFiled: April 15, 2002Date of Patent: July 29, 2003Assignee: The United States of America as represented by the United States Department of EnergyInventors: Steven M. Mirsky, Stephen J. Krill, Jr., Alexander P. Murray
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Patent number: 6590954Abstract: An x-ray interferometer for analyzing high density plasmas and optically opaque materials includes a point-like x-ray source for providing a broadband x-ray source. The x-rays are directed through a target material and then are reflected by a high-quality ellipsoidally-bent imaging crystal to a diffraction grating disposed at 1× magnification. A spherically-bent imaging crystal is employed when the x-rays that are incident on the crystal surface are normal to that surface. The diffraction grating produces multiple beams which interfere with one another to produce an interference pattern which contains information about the target. A detector is disposed at the position of the image of the target produced by the interfering beams.Type: GrantFiled: June 20, 2002Date of Patent: July 8, 2003Assignee: The United States of America as represented by the United States Department of EnergyInventor: Jeffrey A. Koch
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Patent number: 6581387Abstract: A normal-insulator-superconductor (NIS) microrefrigerator in which a superconducting single crystal is both the substrate and the superconducting electrode of the NIS junction. The refrigerator consists of a large ultra-pure superconducting single crystal and a normal metal layer on top of the superconducting crystal, separated by a thin insulating layer. The superconducting crystal can be either cut from bulk material or grown as a thick epitaxial film. The large single superconducting crystal allows quasiparticles created in the superconducting crystal to easily diffuse away from the NIS junction through the lattice structure of the crystal to normal metal traps to prevent the quasiparticles from returning across the NIS junction. In comparison to thin film NIS refrigerators, the invention provides orders of magnitude larger cooling power than thin film microrefrigerators.Type: GrantFiled: February 12, 2002Date of Patent: June 24, 2003Assignee: The United States of America as represented by the United States Department of EnergyInventor: Joel N. Ullom
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Patent number: 6560314Abstract: A converter and method for converting electron energy to irradiative energy comprising foam and/or foil. Foam and foil optionally comprise a high-Z material, such as, but not limited to, tantalum.Type: GrantFiled: February 28, 2001Date of Patent: May 6, 2003Assignee: The United States of America as represented by the Department of EnergyInventor: Peter Poulsen
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Patent number: 6544330Abstract: A bonded, walk-off compensated crystal, for use with optical equipment, and methods of making optical components including same.Type: GrantFiled: February 14, 2001Date of Patent: April 8, 2003Assignee: The United States of America as represented by the Department of EnergyInventor: Christopher A. Ebbers
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Patent number: 6536350Abstract: A propulsion-assisted projectile has a body, a cowl forming a combustion section and a nozzle section. The body has a fuel reservoir within a central portion of the body, and a fuel activation system located along the central axis of the body and having a portion of the fuel activation system within the fuel reservoir. The fuel activation system has a fuel release piston with a forward sealing member where the fuel release piston is adapted to be moved when the forward sealing member is impacted with an air flow, and an air-flow channel adapted to conduct ambient air during flight to the fuel release piston.Type: GrantFiled: March 7, 2001Date of Patent: March 25, 2003Assignee: The United States of America as represented by the United States Department of EnergyInventors: Harry E. Cartland, John W. Hunter
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Patent number: 6518580Abstract: A Cerenkov imaging system for charged particle radiography that determines the energy loss of the charged particle beam passing through an object. This energy loss information provides additional detail on target densities when used with traditional radiographic techniques like photon or x-ray radiography. In this invention a probe beam of 800 MeV to 50 GeV/c charged particles is passed through an object to be imaged, an imaging magnetic spectrometer, to a silicon aerogel Cerenkov radiator where the charged particles emitted Cerenkov light proportional to their velocity. At the same beam focal plane, a particle scintillator produces a light output proportional to the incident beam flux. Optical imaging systems relay the Cerenkov and scintillator information to CCD's or other measurement equipment. A ratio between the Cerenkov and scintillator is formed, which is directly proportional to the line density of the object for each pixel measured.Type: GrantFiled: November 16, 1999Date of Patent: February 11, 2003Assignee: The United States of America as represented by the United States Department of EnergyInventors: Karl A. van Bibber, Frank S. Dietrich