IP Library › Granted Patent US 9,188,738
Granted Patent B2
US 9,188,738 · App. 13/983,829 · Granted Nov 17, 2015

Translucent polycrystalline material and manufacturing method thereof

Inventors: Takunori Taira (Okazaki, JP); Jun Akiyama (Okazaki, JP); Shigeo Asai (Nagoya, JP)
Assignees: Toyota Jidosha Kabushiki Kaisha; Inter-University Research Institute, National Institutes of Natural Sciences; Genesis Research Institute Incorporated
G02B6/10C04B35/44C04B35/447C04B35/495C04B35/6455H01S3/102H01S3/1066C04B2235/3208C04B2235/3212C04B2235/3213C04B2235/3224C04B2235/3225C04B2235/3227C04B2235/3229C04B2235/3239C04B2235/445C04B2235/605C04B2235/75C04B2235/76C04B2235/764C04B2235/77C04B2235/9653H01S3/061H01S3/0604H01S3/0612H01S3/1611H01S3/1643H01S3/1645H01S3/1685
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Quick Facts
Patent No.
US 9,188,738
App. No.
13/983,829
Granted
Nov 17, 2015
Kind
B2
Abstract

Provided is a method for manufacturing a translucent polycrystalline material with optical properties continuously varying in the material. A slurry including single crystal grains that are acted upon by a force when placed in a magnetic field is immobilized in a gradient magnetic field with a spatially varying magnetic flux density and then sintered. For example, where a slurry including single crystal grains of YAG doped with Er and single crystal grains of YAG undoped with a rare earth material is immobilized in the gradient magnetic field, the region with a strong magnetic field becomes a laser oscillation region that is rich in Er-doped YAG, whereas the region with a weak magnetic field becomes a translucent region rich in YAG undoped with a rare earth material. A polycrystalline material having a core with laser oscillations and a guide surrounding the core are obtained at once.

Claims (7)

1. A method for manufacturing a translucent polycrystalline material with optical properties varying in the material, comprising the steps of:

immobilizing a slurry, which includes a group of single crystal grains that are acted upon by a force when placed in a magnetic field, in a gradient magnetic field with a spatially varying magnetic flux density; and

sintering the immobilized material.

2. The method for manufacturing a translucent polycrystalline material according to claim 1 , wherein the slurry includes a group of single crystal grains doped with a rare earth element.

3. The method for manufacturing a translucent polycrystalline material according to claim 1 , wherein the slurry includes a group of single crystal grains different from each other in composition, the group of single crystal grains being acted upon by a translation force when the grains are placed in the gradient magnetic field.

4. The method for manufacturing a translucent polycrystalline material according to claim 1 , wherein the slurry includes a group of single crystal grains different from each other in composition, the group of single crystal grains being acted upon by a rotating force when the grains are placed in the magnetic field.

5. The method for manufacturing a translucent polycrystalline material according to claim 1 , wherein the slurry includes a group of single crystal grains different from each other in composition, the group of single crystal grains being in a crystal orientation stabilized when the grains are placed in the magnetic field.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 6, 2013
From: TAIRA, TAKUNORI; AKIYAMA, JUN; ASAI, SHIGEO
To: TOYOTA JIDOSHA KABUSHIKI KAISHA; INTER-UNIVERSITY RESEARCH INSTITUTE, NATIONAL INSTITUTES OF NATURAL SCIENCES; GENESIS RESEARCH INSTITUTE, INCORPORATED
Reel/Frame 030949/0493 →
Priority Claims (1)
JP 2011-028685 · Feb 14, 2011 · national
Continuity (1)
Related Publication 20130320277A1 · Dec 5, 2013