Invention Grant
- Patent Title: High laser damage threshold reflective light addressing liquid crystal spatial light modulator for linearly polarized light at 1053 nm
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Application No.: US17119962Application Date: 2020-12-11
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Publication No.: US11543692B2Publication Date: 2023-01-03
- Inventor: Wei Fan , Zhibo Xing , Dajie Huang , He Cheng , Gang Xia
- Applicant: Shanghai Institute of Optics And Fine Mechanics, Chinese Academy of Sciences
- Applicant Address: CN Shanghai
- Assignee: Shanghai Institute of Optics And Fine Mechanics, Chinese Academy of Sciences
- Current Assignee: Shanghai Institute of Optics And Fine Mechanics, Chinese Academy of Sciences
- Current Assignee Address: CN Shanghai
- Agency: Mei & Mark LLP
- Agent Manni Li
- Priority: CN202010412229.1 20200515
- Main IPC: G02F1/1333
- IPC: G02F1/1333 ; G02F1/1362 ; G02F1/1335 ; G02F1/1343 ; G02F1/1337

Abstract:
A high laser damage threshold reflective optically addressed liquid crystal spatial light modulator for shaping 1053 nm linearly polarized light beams, comprising a computer-controlled LCoS electrical addressable spatial light modulator, polarization beam splitter, and polarizer, Liquid crystal cell, analyzer, AC power supply, where the liquid crystal cell comprises a transparent conductive film antireflection film layer, a transparent conductive film base layer, a first transparent conductive layer, a liquid crystal alignment layer, a liquid crystal layer, an alignment element, a reflective film layer, a light guide layer, and a second transparent conductive layer. By changing the transparent conductive layer material of the light-transmitting part of the liquid crystal cell from ITO to gallium nitride material, the damage threshold of the high-energy laser is improved, which facilitates application of beam shaping in high-power laser devices.
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