IP Library Granted Patent US 12,142,888
Granted Patent B2
US 12,142,888 · App. 17/050,433 · Granted Nov 12, 2024

Joined body, laser oscillator, laser amplifier, and joined body manufacturing method

Inventors: Hiroaki Furuse (Hokkaido, JP); Yuki Koike (Hokkaido, JP); Ryo Yasuhara (Gifu, JP)
Assignees: National Institute for Materials Science; Inter-University Research Institute Corporation National Institutes of Natural Sciences
H01S3/0401C30B29/04C30B29/06C30B29/28C30B29/36C30B29/406C30B33/06H01S3/06754
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Quick Facts
Patent No.
US 12,142,888
App. No.
17/050,433
Granted
Nov 12, 2024
Kind
B2
Abstract

A joined body ( 10 ) includes an optical material ( 11 ) and a cooling material ( 12 ) that are capable of transmitting light and are joined together. At a joining interface between the optical material ( 11 ) and the cooling material ( 12 ), the joined body ( 10 ) is capable of transmitting light, and also an atom contained in the optical material ( 11 ) diffusively enters the cooling material ( 12 ) in such a degree that an interference fringe is not generated in the joined body ( 10 ). A diffusive entry length of an atom contained in the optical material ( 11 ) into the cooling material ( 12 ) may be in a range from approximately 1.0 nm to approximately 10 μm.

Claims (34)

1. A joined body comprising a first material and a second material that are capable of transmitting light and are joined together,

wherein, at a joining interface between the first material and the second material, the joined body is capable of transmitting light, and also an atom contained in the first material diffusively enters the second material in such a degree that an interference fringe is not generated in the joined body; and

wherein a diffusive entry length of an atom contained in the first material into the second material is in a range from approximately 1.0 nm to approximately 10 μm.

2. The joined body according to claim 1 , wherein,

assuming a wavelength 2 of laser light emitted from a laser interferometer used for measuring transmission wave surface precision to be 633 nm, transmission wave surface precision of the first material and the second material is approximately λ or less.

3. The joined body according to claim 1 , wherein

the first material is a polycrystal, and the second material is a monocrystal.

4. The joined body according to claim 3 , wherein

the polycrystal is YAG or YAG doped with a rare-earth ion, and

the monocrystal is sapphire, aluminum nitride, gallium nitride, silicon carbide, or diamond.

5. The joined body according to claim 1 , wherein

the first material is a phosphor or a magneto-optical material, and the second material is a material having a thermal conductivity higher than that of the first material.

6. A laser oscillator comprising:

the joined body according to claim 1 ;

a resonator being placed in such a way as to sandwich the joined body and resonating light pumped by the joined body; and

a pumping light source emitting light to the joined body in such a way as to pump the joined body.

7. A laser amplifier comprising:

the joined body according to claim 1 ;

a pumping light source emitting light to the joined body in such a way as to pump the joined body; and

an amplified light source introducing light to the joined body in such a way that the light is amplified by the joined body.

8. The joined body of claim 1 , wherein the diffusive entry length of an atom contained in the first material into the second material is in a range from approximately 1.0 nm to approximately 1.0 μm.

9. The joined body of claim 1 , wherein the diffusive entry length of an atom contained in the first material into the second material is in a range from approximately 1.0 nm to approximately 100 nm.

10. The joined body of claim 1 , wherein the diffusive entry length of an atom contained in the first material into the second material is in a range from approximately 1.0 nm to approximately 10 nm.

11. A method for manufacturing a joined body including a first material and a second material that are capable of transmitting light and are joined together, the joined body manufacturing method comprising:

a step of laying the first material and the second material on top of each other;

a step of pressurizing the first material and the second material at a predetermined pressure in such a way that the first material and the second material are closely adhered together;

a step of heating the first material and the second material to a predetermined temperature by supplying pulse current to the pressurized first material and the pressurized second material;

a step of, for a predetermined time, maintaining pressure applied to the first material and the second material at a predetermined pressure and maintaining temperature of the first material and the second material at a predetermined temperature; and

a step of gradually decreasing pressure applied to the first material and the second material, and temperature of the first material and the second material.

12. The joined body manufacturing method according to claim 11 , wherein

the predetermined pressure is in a range from approximately 1 MPa to approximately 10 GPa.

13. The joined body manufacturing method according to claim 11 , wherein

the predetermined temperature is in a range from approximately 900° C. to approximately 1500° C.

14. The joined body manufacturing method according to claim 11 , wherein the predetermined time is in a range from approximately 5 minutes to approximately 20 hours.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 1, 2024
From: FURUSE, HIROAKI; KOIKE, YUKI; YASUHARA, RYO
To: NATIONAL UNIVERSITY CORPORATION KITAMI INSTITUTE OF TECHNOLOGY; INTER-UNIVERSITY RESEARCH INSTITUTE CORPORATION NATIONAL INSTITUTES OF NATURAL SCIENCES
Reel/Frame 068153/0251 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 20, 2024
From: NATIONAL UNIVERSITY CORPORATION HOKKAIDO HIGHER EDUCATION AND RESEARCH SYSTEM
To: NATIONAL INSTITUTE FOR MATERIALS SCIENCE
Reel/Frame 067470/0100 →
MERGER AND CHANGE OF NAME Recorded May 20, 2024
From: NATIONAL UNIVERSITY CORPORATION KITAMI INSTITUTE OF TECHNOLOGY; NATIONAL UNIVERSITY CORPORATION HOKKAIDO HIGHER EDUCATION AND RESEARCH SYSTEM
To: NATIONAL UNIVERSITY CORPORATION HOKKAIDO HIGHER EDUCATION AND RESEARCH SYSTEM
Reel/Frame 068092/0051 →
Priority Claims (1)
JP 2018-083878 · Apr 25, 2018 · national
Continuity (1)
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