Patents by Inventor Kouhei KURIMOTO

Kouhei KURIMOTO has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Publication number: 20230392280
    Abstract: An object of the present invention is to provide a GaN crystal long in light emission lifetime by time-resolved photoluminescence measurement and provide high-quality GaN crystal and GaN substrate that have few specified crystal defects affecting the light emission lifetime. A gallium nitride crystal having a light emission lifetime by time-resolved photoluminescence measurement, of 5 ps or more and 200 ps or less, and satisfying at least one of the following requirement (i) and requirement (ii): (i) an FWHM in a 004 diffraction X-ray rocking curve is 50 arcsec or less at least one position of the crystal; and (ii) a dislocation density is 5×106 cm?2 or less.
    Type: Application
    Filed: August 24, 2023
    Publication date: December 7, 2023
    Applicants: MITSUBISHI CHEMICAL CORPORATION, THE JAPAN STEEL WORKS, LTD., TOHOKU UNIVERSITY
    Inventors: Yutaka MIKAWA, Hirotaka IKEDA, Quanxi BAO, Kouhei KURIMOTO, Kohei SHIMA, Kazunobu KOJIMA, Toru ISHIGURO, Shigefusa CHICHIBU
  • Patent number: 11777469
    Abstract: A bonded substrate includes a quartz substrate and a piezoelectric substrate which is bonded on the quartz substrate and on which a surface acoustic wave propagates, wherein the quartz substrate and the piezoelectric substrate are bonded by covalently coupling at a bonding interface, and an orientation of the quartz substrate and an orientation of the piezoelectric substrate intersect with each other on an orthogonal direction side or in the range of 65 degrees to 115 degrees in a bonding surface direction.
    Type: Grant
    Filed: June 7, 2018
    Date of Patent: October 3, 2023
    Assignee: THE JAPAN STEEL WORKS, LTD.
    Inventors: Kouhei Kurimoto, Kazuhito Kishida, Rinzo Kayano, Jun Mizuno, Shoji Kakio
  • Patent number: 11746439
    Abstract: A pressure container for crystal production having excellent corrosion-resistance is provided. This pressure container produces crystals within the container using a seed crystal, a mineralizer, a raw material, and ammonia in a supercritical state or a subcritical state as a solvent. The pressure container has Ag present over the entire surface of at least the inner surface thereof in contact with the solvent. The Ag can be disposed by one or a combination of two or more among, for instance, Ag lining, Ag welding, and Ag plating. The mineralizer is preferably a fluorine mineralizer containing no halogen atoms other than fluorine.
    Type: Grant
    Filed: April 5, 2018
    Date of Patent: September 5, 2023
    Assignees: JAPAN STEEL WORKS M&E, INC., TOHOKU UNIVERSITY
    Inventors: Kouhei Kurimoto, Quanxi Bao, Mutsuo Ueda, Yuji Sasagawa, Masaya Morimoto, Toru Ishiguro, Shigefusa Chichibu
  • Patent number: 11502665
    Abstract: A method of manufacturing a bonded substrate, which has a quartz substrate and a piezoelectric substrate bonded, includes irradiating a bonding surface of the quartz substrate and a bonding surface of the piezoelectric substrate with ultraviolet light under a pressure lower than atmosphere pressure. After the irradiation, the bonding surface of the quartz substrate and the bonding surface of the piezoelectric substrate are brought into contact. And the quartz substrate and the piezoelectric substrate are pressurized in a thickness direction to bond the bonding surfaces.
    Type: Grant
    Filed: May 15, 2019
    Date of Patent: November 15, 2022
    Assignee: THE JAPAN STEEL WORKS, LTD.
    Inventors: Kouhei Kurimoto, Kazuhito Kishida, Rinzo Kayano, Jun Mizuno, Shoji Kakio
  • Patent number: 11061261
    Abstract: An optical modulator, a substrate for an optical modulator, a method of manufacturing an optical modulator, and a method of manufacturing a substrate for an optical modulator that can reduce a propagation loss are provided. An optical modulator 1 according to an embodiment includes: a base substrate 10; a waveguide substrate 20 disposed over the base substrate 10 and including an electro-optic effect; a waveguide 23 formed on the waveguide substrate 20 for performing optical modulation; and an electrode 40 configured to apply a voltage to the waveguide 23. Here, the base substrate 10 and the waveguide substrate 20 are made of the same material, the waveguide 23 is formed inside the waveguide substrate 20, and a refractive index of the waveguide substrate 20 is larger than a refractive index of the base substrate 10.
    Type: Grant
    Filed: September 30, 2019
    Date of Patent: July 13, 2021
    Assignee: THE JAPAN STEEL WORKS, LTD.
    Inventors: Toshifumi Yonai, Kazuhito Kishida, Rinzo Kayano, Satoru Ohsaki, Kengo Ogawa, Kouhei Kurimoto, Hiroaki Yokota, Shoji Kakio
  • Publication number: 20210108338
    Abstract: A bonded substrate includes: a quartz substrate cut at an intersection angle with a crystal X-axis; and a piezoelectric substrate laminated on the quartz substrate. Preferably, a cut angle of the quartz substrate has an angle in the range of 85 to 95 degrees with respect to the crystal X-axis. Preferably, the surface acoustic wave propagation direction of the quartz substrate has an angle of 15 to 50 degrees with respect to a crystal Y-axis. Preferably, as a piezoelectric substrate, lithium niobate or lithium tantalate is used. Preferably, the piezoelectric substrate has a thickness h having a relationship of 0.02 to 0.11? with respect to a wavelength ? of a surface acoustic wave.
    Type: Application
    Filed: February 4, 2019
    Publication date: April 15, 2021
    Applicant: THE JAPAN STEEL WORKS, LTD.
    Inventors: Kouhei KURIMOTO, Kazuhito KISHIDA, Rinzo KAYANO, Jun MIZUNO, Shoji KAKIO
  • Publication number: 20200127634
    Abstract: A bonded substrate includes a quartz substrate and a piezoelectric substrate which is bonded on the quartz substrate and on which a surface acoustic wave propagates, wherein the quartz substrate and the piezoelectric substrate are bonded by covalently coupling at a bonding interface, and an orientation of the quartz substrate and an orientation of the piezoelectric substrate intersect with each other on an orthogonal direction side or in the range of 65 degrees to 115 degrees in a bonding surface direction.
    Type: Application
    Filed: June 7, 2018
    Publication date: April 23, 2020
    Applicant: THE JAPAN STEEL WORKS, LTD.
    Inventors: Kouhei KURIMOTO, Kazuhito KISHIDA, Rinzo KAYANO, Jun MIZUNO, Shoji KAKIO
  • Publication number: 20200110291
    Abstract: An optical modulator, a substrate for an optical modulator, a method of manufacturing an optical modulator, and a method of manufacturing a substrate for an optical modulator that can reduce a propagation loss are provided. An optical modulator 1 according to an embodiment includes: a base substrate 10; a waveguide substrate 20 disposed over the base substrate 10 and including an electro-optic effect; a waveguide 23 formed on the waveguide substrate 20 for performing optical modulation; and an electrode 40 configured to apply a voltage to the waveguide 23. Here, the base substrate 10 and the waveguide substrate 20 are made of the same material, the waveguide 23 is formed inside the waveguide substrate 20, and a refractive index of the waveguide substrate 20 is larger than a refractive index of the base substrate 10.
    Type: Application
    Filed: September 30, 2019
    Publication date: April 9, 2020
    Inventors: Toshifumi YONAI, Kazuhito KISHIDA, Rinzo KAYANO, Satoru OHSAKI, Kengo OGAWA, Kouhei KURIMOTO, Hiroaki YOKOTA, Shoji KAKIO
  • Publication number: 20200048791
    Abstract: The present invention relates to a pressure container for crystal production having excellent corrosion-resistance. This pressure container produces crystals within the container using a seed crystal, a mineralizer, a raw material, and ammonia in a super critical state and/or a sub-critical state as a solvent. The pressure container has Ag present over the entire surface of at least the exposed inner surface thereof. The Ag can be disposed by one or a combination of two or more among, for instance, Ag lining, Ag welding, and Ag plating. The mineralizer is preferably a fluorine mineralizer containing no halogen atoms other than fluorine.
    Type: Application
    Filed: April 5, 2018
    Publication date: February 13, 2020
    Applicants: THE JAPAN STEELWORKS, LTD., TOHOKU UNIVERSITY
    Inventors: Kouhei KURIMOTO, Quanxi BAO, Mutsuo UEDA, Yuji SASAGAWA, Masaya MORIMOTO, Toru ISHIGURO, Shigefusa CHICHIBU
  • Publication number: 20190267967
    Abstract: A method of manufacturing a bonded substrate, which has a quartz substrate and a piezoelectric substrate bonded, includes irradiating a bonding surface of the quartz substrate and a bonding surface of the piezoelectric substrate with ultraviolet light under a pressure lower than atmosphere pressure. After the irradiation, the bonding surface of the quartz substrate and the bonding surface of the piezoelectric substrate are brought into contact. And the quartz substrate and the piezoelectric substrate are pressurized in a thickness direction to bond the bonding surfaces.
    Type: Application
    Filed: May 15, 2019
    Publication date: August 29, 2019
    Applicants: THE JAPAN STEEL WORKS, LTD., WASEDA UNIVERSITY, UNIVERSITY OF YAMANASHI
    Inventors: Kouhei KURIMOTO, Kazuhito KISHIDA, Rinzo KAYANO, Jun MIZUNO, Shoji KAKIO
  • Patent number: 10340881
    Abstract: There is provided a bonded substrate including: a quartz substrate; and a piezoelectric substrate which is bonded on the quartz substrate and on which a surface acoustic wave propagates, wherein the quartz substrate and the piezoelectric substrate are bonded at a bonding interface through covalent bonding, and a surface acoustic wave element having a higher phase velocity and a higher electromechanical coupling factor than conventional one is obtained by disposing an interdigital electrode on a principal surface of the piezoelectric substrate.
    Type: Grant
    Filed: February 3, 2017
    Date of Patent: July 2, 2019
    Assignees: THE JAPAN STEEL WORKS, LTD., WASEDA UNIVERSITY, UNIVERSITY OF YAMANASHI
    Inventors: Kouhei Kurimoto, Kazuhito Kishida, Rinzo Kayano, Jun Mizuno, Shoji Kakio
  • Publication number: 20180048282
    Abstract: There is provided a bonded substrate including: a quartz substrate; and a piezoelectric substrate which is bonded on the quartz substrate and on which a surface acoustic wave propagates, wherein the quartz substrate and the piezoelectric substrate are bonded at a bonding interface through covalent bonding, and a surface acoustic wave element having a higher phase velocity and a higher electromechanical coupling factor than conventional one is obtained by disposing an interdigital electrode on a principal surface of the piezoelectric substrate.
    Type: Application
    Filed: February 3, 2017
    Publication date: February 15, 2018
    Applicants: THE JAPAN STEEL WORKS, LTD., WASEDA UNIVERSITY, UNIVERSITY OF YAMANASHI
    Inventors: Kouhei KURIMOTO, Kazuhito KISHIDA, Rinzo KAYANO, Jun MIZUNO, Shoji KAKIO