Patents by Inventor Yuichi Tomori

Yuichi Tomori 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).

  • Patent number: 7738520
    Abstract: An optical semiconductor device and optical semiconductor integrated circuit are provided by combining, on a semiconductor substrate, materials having different refractive indices and different temperature dependence of the refractive indices. In particular, it becomes possible to control the temperature dependence of the oscillation wavelength with a propagating region having a material and/or structure whose temperature dependence of the refractive index is different from that of a gain region of the semiconductor laser. In addition, they can be configured to have a plurality of interfaces formed along the waveguide direction of the optical waveguide so that the light reflected off the first interface is weakened by the light reflected from the remaining interfaces. Also, they can be configured with the interfaces inclined to the propagating direction so that the waveguide loss due to the reflection and refraction between the optical waveguides whose refractive indices differ from each other can be reduced.
    Type: Grant
    Filed: March 30, 2004
    Date of Patent: June 15, 2010
    Assignee: Nippon Telegraph and Telephone Corporation
    Inventors: Nobuhiro Nunoya, Yasuo Shibata, Naoki Fujiwara, Nobuhiro Kikuchi, Yuichi Tomori
  • Patent number: 7474817
    Abstract: An integrated optical waveguide has a first optical waveguide, a second optical waveguide, and a groove. The second optical waveguide is coupled to the first optical waveguide and has a refractive index that is different from the first optical waveguide. The groove is disposed so as to traverse an optical path of the first optical waveguide and is separated from an interface between the first optical waveguide and the second optical waveguide by a predetermined spacing. The spacing from the interface and the width of the groove are determined such that reflection at a boundary between the first optical waveguide and the second optical waveguide is weakened. A semiconductor board may be disposed at a boundary between the first optical waveguide and the second optical waveguide.
    Type: Grant
    Filed: May 30, 2007
    Date of Patent: January 6, 2009
    Assignee: Nippon Telegraph and Telephone Corporation.
    Inventors: Nobuhiro Nunoya, Yasuo Shibata, Naoki Fujiwara, Nobuhiro Kikuchi, Yuichi Tomori
  • Patent number: 7471864
    Abstract: An integrated optical waveguide has first, second, and third optical waveguiding regions. The second optical waveguiding region has a refractive index different from that of the first optical waveguiding region. The second optical waveguiding region has an interface surface with the first optical waveguiding region that is inclined with respect to the waveguide direction of the first optical waveguiding region. The third optical waveguiding region has an interface surface with the second optical waveguiding region that is disposed such that a refraction direction through the interface surface is in line with the waveguide direction.
    Type: Grant
    Filed: May 30, 2007
    Date of Patent: December 30, 2008
    Assignee: Nippon Telegraph and Telephone Corporation
    Inventors: Nobuhiro Nunoya, Yasuo Shibata, Naoki Fujiwara, Nobuhiro Kikuchi, Yuichi Tomori
  • Publication number: 20070223856
    Abstract: An integrated optical waveguide has a first optical waveguide, a second optical waveguide, and a groove. The second optical waveguide is coupled to the first optical waveguide and has a refractive index that is different from the first optical waveguide. The groove is disposed so as to traverse an optical path of the first optical waveguide and is separated from an interface between the first optical waveguide and the second optical waveguide by a predetermined spacing. The spacing from the interface and the width of the groove are determined such that reflection at a boundary between the first optical waveguide and the second optical waveguide is weakened. A semiconductor board may be disposed at a boundary between the first optical waveguide and the second optical waveguide.
    Type: Application
    Filed: May 30, 2007
    Publication date: September 27, 2007
    Applicant: Nippon Telegraph and Telephone Corporation
    Inventors: Nobuhiro Nunoya, Yasuo Shibata, Naoki Fujiwara, Nobuhiro Kikuchi, Yuichi Tomori
  • Publication number: 20070223857
    Abstract: An integrated optical waveguide has first, second, and third optical waveguiding regions. The second optical waveguiding region has a refractive index different from that of the first optical waveguiding region. The second optical waveguiding region has an interface surface with the first optical waveguiding region that is inclined with respect to the waveguide direction of the first optical waveguiding region. The third optical waveguiding region has an interface surface with the second optical waveguiding region that is disposed such that a refraction direction through the interface surface is in line with the waveguide direction.
    Type: Application
    Filed: May 30, 2007
    Publication date: September 27, 2007
    Applicant: Nippon Telegraph and Telephone Corporation
    Inventors: Nobuhiro Nunoya, Yasuo Shibata, Naoki Fujiwara, Nobuhiro Kikuchi, Yuichi Tomori
  • Publication number: 20060050752
    Abstract: An optical semiconductor device and optical semiconductor integrated circuit are provided by combining, on a semiconductor substrate, materials having different refractive indices and different temperature dependence of the refractive indices. In particular, it becomes possible to control the temperature dependence of the oscillation wavelength with a propagating region having a material and/or structure whose temperature dependence of the refractive index is different from that of a gain region of the semiconductor laser. In addition, they can be configured to have a plurality of interfaces formed along the waveguide direction of the optical waveguide so that the light reflected off the first interface is weakened by the light reflected from the remaining interfaces. Also, they can be configured with the interfaces inclined to the propagating direction so that the waveguide loss due to the reflection and refraction between the optical waveguides whose refractive indices differ from each other can be reduced.
    Type: Application
    Filed: March 30, 2004
    Publication date: March 9, 2006
    Inventors: Nobuhiro Nunoya, Yasuo Shibata, Naoki Fujiwara, Nobuhiro Kikuchi, Yuichi Tomori