Patents Assigned to Inter-University Research Institute Corporation
  • Patent number: 9502631
    Abstract: End-group components for superconducting accelerator cavity used in acceleration of charged particles are manufactured by subjecting pure niobium sheet materials to press forming composed mainly of flat-bottomed cylindrical drawing, preferably by simultaneously conducting control of slide velocity and/or its motion and control of tool die temperature and/or its distribution/gradient in the above press forming, further preferably by dynamically controlling blank holding force in accordance with the variation of flange area, flange thickness and deformed characteristics of niobium sheet materials during the press forming, more preferably by preparing an anisotropically shaped blank instead of a circular blank by use of servo press forming machine, servo-die cushion temperature control equipment, water-soluble solid coating type lubricant, and a tooling die.
    Type: Grant
    Filed: July 31, 2014
    Date of Patent: November 22, 2016
    Assignees: SHINOHARA PRESS SERVICE CO., LTD., INTER-UNIVERSITY RESEARCH INSTITUTE CORPORATION
    Inventors: Kiyohiko Nohara, Masayuki Shinohara, Nobuyuki Kawabata, Hideyoshi Nakamura, Hitoshi Hayano, Akira Yamamoto, Takayuki Saeki, Shigeki Kato, Masashi Yamanaka
  • Publication number: 20160316549
    Abstract: The optical resonator as intends to generate coherent X-ray by irradiation of polarized laser interference fringes with electron beam has been unknown. The present invention provides an optical resonator that is capable of preparing polarization laser, polarization X-ray and coherent X-ray. The optical resonator is characterized by comprising an optical resonator that is capable of circulating two or more polarization lasers and irradiation of the polarization lasers with electron beam introduced by an electron beam feed port which is inserted in the intersection of laser paths inside the optical resonator.
    Type: Application
    Filed: December 4, 2014
    Publication date: October 27, 2016
    Applicant: INTER-UNIVERSITY RESEARCH INSTITUTE CORPORATION HIGH ENERGY ACCELERATOR RESEARCH
    Inventors: Junji URAKAWA, Yosuke HONDA
  • Patent number: 9434387
    Abstract: A time-series waveform of tire vibration detected by an acceleration sensor is windowed by a windowing unit, time-series waveforms of the tire vibration are extracted for respective time windows, and feature vectors of the respective time windows are calculated. Then kernel functions are calculated from the feature vectors of the respective time windows and road surface feature vectors, which are the feature vectors for the respective time windows calculated from the time-series waveform of the tire vibration obtained for distinctive road surface conditions calculated in advance. And the road surface condition is determined by comparing values of discriminant functions using the kernel functions. As a result, the road surface condition can be determined from the time-series waveform of the tire vibration without detecting peak positions or measuring the wheel speed. Moreover, robustness against changes in tire size can be added to the determination of the road surface condition.
    Type: Grant
    Filed: August 9, 2013
    Date of Patent: September 6, 2016
    Assignees: BRIDGESTONE CORPORATION, INTER-UNIVERSITY RESEARCH INSTITUTE CORPORATION, RESEARCH ORGANIZATION OF INFORMATION AND SYSTEM
    Inventors: Yasushi Hanatsuka, Tomoyuki Higuchi, Tomoko Matsui
  • Patent number: 9410176
    Abstract: This invention relates to a method for producing a protein of interest, comprising introducing an expression vector which comprises a gene fragment comprising a DNA encoding the protein of interest and a selectable marker gene and also comprises a pair of transposon sequences at both terminals of the gene fragment, into a suspension mammalian cell; integrating the gene fragment inserted between the pair of transposon sequences into a chromosome of the mammalian cell; obtaining a suspension mammalian cell producing the protein of interest; and suspension-culturing the suspension mammalian cell, and a suspension mammalian cell which expresses the protein of interest by the method.
    Type: Grant
    Filed: December 14, 2011
    Date of Patent: August 9, 2016
    Assignees: Inter-University Research Institute Corporation Research Organization of Information and Systems, KYOWA HAKKO KIRIN CO., LTD.
    Inventors: Megumi Kurokawa, Yoko Hayashi, Masayoshi Tsukahara
  • Patent number: 9411026
    Abstract: This computation device and method exponentially shortens a computation time of an NP-complete problem or the like mapped into an Ising model by exponentially shortening a computation time of the Ising mode. For each pair of a plurality of slave lasers, by controlling the intensity, the polarization, and the phase of light exchanged between two slave lasers using an attenuator and a wave plate, the magnitude and the sign of pseudo Ising interaction between two slave lasers are implemented. Then, after the plurality of slave lasers arrive at a steady state, by measuring the polarization of light generated by each slave laser with left-handed circular polarization and right-handed circular polarization used as bases, a pseudo spin of each slave laser is measured.
    Type: Grant
    Filed: February 28, 2012
    Date of Patent: August 9, 2016
    Assignee: INTER-UNIVERSITY RESEARCH INSTITUTE CORPORATION, RESEARCH ORGANIZATION OF INFORMATION AND SYSTEMS
    Inventors: Yoshihisa Yamamoto, Shoko Utsunomiya, Kenta Takata, Kai Yan
  • Publication number: 20160209646
    Abstract: The present invention is intended to provide an adaptive optics system and an optical device that allow correction of wavefront phase aberration with higher accuracy than before and have a wider correction range than the conventional ones, regardless of the distance between the observation target and the fluctuation layer, and the size of the observation target. An adaptive optics system includes: a wavefront phase modulator that makes aberration correction to incident light and emits the corrected light; and an imaging-conjugated position adjustment mechanism that adjusts freely within a specimen the position of a surface imaging-conjugated with a fluctuation correction surface formed by the wavefront phase modulator. The imaging-conjugated position adjustment mechanism adjusts the fluctuation correction surface to be imaging-conjugated with a fluctuation layer existing in the specimen.
    Type: Application
    Filed: September 19, 2014
    Publication date: July 21, 2016
    Applicant: INTER-UNIVERSITY RESEARCH INSTITUTE CORPORATION NATIONAL INSTITUTES OF NATURAL SCIENCES
    Inventors: Masayuki HATTORI, Yosuke TAMADA, Takashi MURATA, Yasuhiro KAMEI, Mitsuyasu HASEBE, Yutaka HAYANO, Shin OYA
  • Patent number: 9384888
    Abstract: Upon producing a transparent polycrystalline material, a suspension liquid (or slurry 1) is prepared, the suspension liquid being made by dispersing a raw-material powder in a solution, the raw-material powder including optically anisotropic single-crystalline particles to which a rare-earth element is added. A formed body is obtained from the suspension liquid by means of carrying out slip casting in a space with a magnetic field applied. On this occasion, while doing a temperature control so that the single-crystalline particles demonstrate predetermined magnetic anisotropy, one of static magnetic fields and rotary magnetic fields is selected in compliance with a direction of an axis of easy magnetization in the single-crystalline particles, and is then applied to them. A transparent polycrystalline material is obtained by sintering the formed body, the transparent polycrystalline material having a polycrystalline structure whose crystal orientation is controlled.
    Type: Grant
    Filed: May 23, 2013
    Date of Patent: July 5, 2016
    Assignees: INTER-UNIVERSITY RESEARCH INSTITUTE CORPORATION, NATIONAL INSTITUTES OF NATURAL SCIENCES, GENESIS RESEARCH INSTITUTE, INCORPORATED
    Inventors: Takunori Taira, Jun Akiyama, Shigeo Asai, Kunihiko Hara
  • Publication number: 20160190766
    Abstract: It has been very difficult to accumulate strong laser in the conventional optical resonator, because firstly it has been very difficult to control a resonator length less than 1 ? in resonation position which is required for the laser amplification more than 1,000 times and secondly, the conventional method has utilized laser strength of amplified laser in the optical resonator as the resonance control signal. The present invention provides an optical resonator system to accumulate strong laser. In the system, unamplified modulation wave or harmonic which are derived from oscillation laser are selectively used to tune a resonator length of the optical resonator.
    Type: Application
    Filed: September 12, 2013
    Publication date: June 30, 2016
    Applicant: Inter-University Research Institute Corporation High Energy Accelerator Research Organization
    Inventors: Junji URAKAWA, Kazuyuki SAKAUE
  • Patent number: 9349375
    Abstract: According to an embodiment, a signal processing apparatus includes an estimation unit and an updating unit. The estimation unit is configured to estimate an auxiliary variable of a target section including first and second sections of input signals by using an approximating auxiliary function for approximating an auxiliary function having an auxiliary variable as an argument. The auxiliary function is determined according to an objective function that outputs a function value that is smaller as a statistical independence of separated signals into which input signals in time-series are separated by a demixing matrix is higher. The estimation unit is configured to estimate a value of the auxiliary variable of the target section based on the estimated auxiliary variable. The updating unit is configured to update the demixing matrix such that a function value of the approximating auxiliary function is minimized.
    Type: Grant
    Filed: August 15, 2013
    Date of Patent: May 24, 2016
    Assignees: Inter-University Research Institute Corporation, Research Organization of Information and Systems, KABUSHIKI KAISHA TOSHIBA
    Inventors: Toru Taniguchi, Nobutaka Ono
  • Patent number: 9342792
    Abstract: For each pair of a plurality of slave lasers B for which injection synchronization is performed by a master laser M, by controlling the intensity of light exchanged between two slave lasers B and an optical path length between the two slave lasers B using a slave-to-laser intensity control unit IA and an inter-slave laser optical path length control unit IP, the magnitude and the sign of pseudo ising interaction Jij between the two slave lasers B are implemented. After the plurality of slave lasers B arrive at a steady state, by measuring relative values of the oscillation phases of the plurality of slave lasers B with respect to the oscillation phase of the master laser M by using an oscillation phase measuring unit PM, pseudo ising spins ?i of the plurality of slave lasers B are measured.
    Type: Grant
    Filed: November 7, 2013
    Date of Patent: May 17, 2016
    Assignees: Inter-University Research Institute Corporation, Research Organization of Information and Systems, The Board of Trustees of the Leland Stanford Junior University
    Inventors: Shoko Utsunomiya, Kenta Takata, Yoshihisa Yamamoto, Kai Wen
  • Patent number: 9324996
    Abstract: This invention provides a carbon nanostructure including: carbon containing rod-shaped materials and/or carbon containing sheet-shaped materials which are bound three-dimensionally; and graphene multilayer membrane walls which are formed in the rod-shaped materials and/or the sheet-shaped materials; wherein air-sac-like pores, which are defined by the graphene multilayer membrane walls, are formed in the rod-shaped materials and/or the sheet-shaped materials.
    Type: Grant
    Filed: August 8, 2011
    Date of Patent: April 26, 2016
    Assignees: INTER-UNIVERSITY RESEARCH INSTITUTE CORPORATION NATIONAL INSTITUTES OF NATURAL SCIENCES, DENSO CORPORATION, NIPPON STEEL & SUMIKIN CHEMICAL CO., LTD.
    Inventors: Nobuyuki Nishi, Norikazu Adachi, Yasuyuki Ooba, Manabu Yamada, Kenichiro Kami, Kazuhiko Mizuuchi
  • Patent number: 9316418
    Abstract: An apparatus for achieving a cryogenic temperature in a movable system, includes a rotating table, a vacuum chamber which is fixed on the rotating table, a cryogen-free refrigerator which has a cooling section inside the vacuum chamber, an inner cylinder which is fixed to a bottom of the rotating table, an outer cylinder which stores the inner cylinder such that the inner cylinder is rotatable and includes an outward and return gas port which is provided to be continuous with gas passages, a compressor which circulates gas to the cryogen-free refrigerator through the outward and return gas passages, and a rotary joint for wiring which is fixed to the inner cylinder and rotatably conducts electricity, wherein a piece of internal wiring is led through a through-hole and a hole, and electricity is supplied to a piece of equipment on the rotating table through the piece of internal wiring.
    Type: Grant
    Filed: February 12, 2014
    Date of Patent: April 19, 2016
    Assignee: INTER-UNIVERSITY RESEARCH INSTITUTE CORPORATION HIGH ENERGY ACCELERATOR RESEARCH ORGANIZATION
    Inventor: Osamu Tajima
  • Patent number: 9310596
    Abstract: A compound microscope device allows simultaneous observation of one specimen by a transmission electron microscope and an optical microscope. The compound microscope device 1 of the present invention has a transmission electron microscope 2 and an optical microscope 4. A specimen 10 and a reflection mirror 41 are disposed on an electron optical axis C of an electron ray. The reflection mirror 41 is inclined from the electron optical axis C toward the optical object lens 43 and the specimen 10. Light from the specimen 10 (fluorescent light, reflection light, and the like) is reflected by the reflection mirror 41 and enters into the optical object lens 43. The electron ray from the electron microscope 2 passes through a mounting center hole 42 of the reflection mirror 41. This makes it possible to observe one specimen simultaneously by the electron microscope 2 and the optical microscope 4.
    Type: Grant
    Filed: April 6, 2011
    Date of Patent: April 12, 2016
    Assignees: INTER-UNIVERSITY RESEARCH INSTITUTE CORPORATION NATIONAL INSTITUTE OF NATURAL SCIENCES, JEOL LTD.
    Inventors: Kuniaki Nagayama, Yoshihiro Arai, Hirofumi Iijima, Susumu Terakawa
  • Publication number: 20160091545
    Abstract: [Problem to be Solved] The present invention provides a radio wave measurement device enabling highly sensitive measurements of radio waves at an extremely low temperature. [Solution] The radio wave measurement device has a radiation-blocking filter through which a targeted radio wave is transmitted, a radio wave-transparent material to reflect a non-targeted electromagnetic wave included in radio waves, and a radio wave detector which are placed in a vacuum vessel, in which the radio waves are transmitted through the radiation-blocking filter, the non-targeted electromagnetic wave included in the radio waves is reflected toward the radiation-blocking filter by the radio wave-transparent material and collected as heat into the radiation-blocking filter, and the heat is exhausted out of the system, allowing the radio waves transmitted through the radio wave-transparent material to be measured with high sensitivity by the radio wave detector.
    Type: Application
    Filed: December 2, 2015
    Publication date: March 31, 2016
    Applicant: INTER-UNIVERSITY RESEARCH INSTITUTE CORPORATION
    Inventors: Tajima Osamu, Shugo Oguri
  • Patent number: 9285275
    Abstract: Provided are a method and an apparatus for measuring the spectral intensity and phase of a light pulse having an arbitrary time duration. The apparatus includes: a nonlinear mixing means for generating a signal light pulse expressed by the following Formula (? denotes an operator representing general nonlinear mixing, and ? denotes a coefficient which is proportional to a nonlinear susceptibility in the nonlinear mixing) by nonlinearly mixing a reference light pulse having an electric field Er(t??) delayed by an optical delay means and a measurement target light pulse having an electric field E0(t); and Er(t??)+?Er(t??)?E0(t) an imaging spectrum device for spectrally splitting the signal light pulse and outputting a Fourier transform signal expressed by the following Formula (F denotes a symbol indicating Fourier transform, * denotes a complex conjugate, and R denotes a symbol indicating a real part), |F[Er(t??)]|2+|?F[Er(t??)?E0(t)]|2+2R{?F[Er(t??)]*·F[Er(t??)?E0(t)]}.
    Type: Grant
    Filed: April 23, 2013
    Date of Patent: March 15, 2016
    Assignee: INTER-UNIVERSITY RESEARCH INSTITUTE CORPORATION NATIONAL INSTITUTES OF NATURAL SCIENCES
    Inventors: Takao Fuji, Yutaka Nomura
  • Publication number: 20160069825
    Abstract: It is an object of the present invention to provide a method and an apparatus for measuring a scattering intensity distribution capable of measuring a scattering intensity distribution in a reciprocal space in a short time.
    Type: Application
    Filed: December 10, 2013
    Publication date: March 10, 2016
    Applicant: Inter-University Research Institute Corporation High Energy Accelerator Research Organization
    Inventors: Tadashi Matsushita, Wolfgang Voegeli, Tetsuro Shirasawa, Toshio Takahashi, Etsuo Arakawa
  • Publication number: 20150380119
    Abstract: A method for synthesizing a radioactive technetium-99m-containing substance and a synthesizing device are provided. The method for synthesizing a radioactive technetium-99m-containing substance has a step for generating negative muons and a step for irradiating the negative muons onto a ruthenium sample. The ruthenium material preferably includes a metallic ruthenium and/or a ruthenium compound. Also, the ruthenium sample preferably has a plurality of superimposed ruthenium thin plates having a thickness of 4 mm or less.
    Type: Application
    Filed: June 26, 2015
    Publication date: December 31, 2015
    Applicant: Inter-University Research Institute Corporation High Energy Accelerator Research Organization
    Inventor: Kanetada NAGAMINE
  • Patent number: 9224571
    Abstract: A photocathode high-frequency electron-gun cavity apparatus of the present invention is provided with a high-frequency acceleration cavity (1), a photocathode (8, 15), a laser entering port (9), a high-frequency power input coupler port (10), and a high-frequency resonant tuner (16). Here, the apparatus adopts an ultra-small high-frequency accelerator cavity which contains a cavity cell formed only with a smooth and curved surface at an inner face thereof without having a sharp angle part for preventing discharging, obtaining higher strength of high-frequency electric field, and improving high-frequency resonance stability.
    Type: Grant
    Filed: September 26, 2011
    Date of Patent: December 29, 2015
    Assignees: INTER-UNIVERSITY RESEARCH INSTITUTE CORPORATION, HIGH ENERGY ACCELERATOR RESEARCH ORGANIZATION
    Inventors: Junji Urakawa, Nobuhiro Terunuma, Toshikazu Takatomi
  • Publication number: 20150348679
    Abstract: Problem There is proposed an innovative cross-sectional structure, with an idea contrary to the conventional one, utilizing the non-reactivity between Cu and Ta (or between Ag and Nb, Ta) in a high-temperature short-time heat treatment, thus achieving (1) the suppression of the low magnetic-field instability, (2) excellent wire drawability of a precursor wire, and (3) the reduction of the cost required for the incorporation of a stabilizer. Means for Resolution There is proposed a structure having an assembly of a plurality of single wires, wherein the assembly is covered with an outer cover (skin) formed from Nb or Ta, wherein each of the single wires has an Nb/Al composite filament region which is formed from a composite of Nb and Al mixed in an Nb:Al molar ratio of 3:1, and which is covered with a partition formed from Nb or Ta, and further covered with an interfilamentary barrier formed from Cu or Ag disposed around the partition.
    Type: Application
    Filed: November 15, 2012
    Publication date: December 3, 2015
    Applicants: HITACHI CABLE, LTD., NATIONAL INSTITUTE FOR MATERIALS SCIENCE, INTER-UNIVERSITY RESEARCH INSTITUTE CORPORATION
    Inventors: Hitachi Cable, Ltd., Inter-University Research Institute Corporation, National Institute For Materials Science
  • Patent number: 9203210
    Abstract: When an excitation light is entered in a laser medium including a doped (containing rare earth element) YAG, the vicinity of the excitation light entry face is locally heated which generates a birefringence, causing degradation of linear polarization of emitted laser. To avoid such a phenomenon, it was necessary to make the excitation light pulsed and slow down the repetition rate of the pulse. In this device, an undoped YAG is bonded to a excitation light entry face of the laser medium made of a doped YAG. By arranging the YAG <100> axis so as to extend along the optical axis of the laser oscillation system, a linearly polarized pulse laser can be obtained.
    Type: Grant
    Filed: October 24, 2014
    Date of Patent: December 1, 2015
    Assignee: INTER-UNIVERSITY RESEARCH INSTITUTE CORPORATION NATIONAL INSTITUTES OF NATURAL SCIENCES
    Inventors: Takunori Taira, Rakesh Bhandari