Experimental Study on the Damage of Optical Materials by out of Band Composite Laser

Author:

Yang Liu,Lisheng Liu,Wei Tang,Junfeng Shao,Xuelei Li,Junjie Sun,Ming Shao,Xiangzheng Cheng

Abstract

For the paper, experimental studies were performed on the damage of the Ge- and Si-based flat window by lasers out-of-band. The experimental results showed that lasers out-of-band can cause film damage and substrate damage to Ge and Si windows. The high-energy laser damage window mechanism mainly manifested as thermal effects. The composite laser damage thresholds for the substrate were an Si window of 21.6 J/cm2 and a Ge window of 3 J/cm2. Compared with continuous laser and long pulse laser experimental results, it was found that the use of long pulse-continuous composite constitution could effectively reduce the damage threshold. Compared to the long-pulse laser, the composite laser could achieve similar damage effects with a smaller energy density.

Funder

Youth Innovation Promotion Association of Chinese Academy of Sciences

Publisher

MDPI AG

Subject

Fluid Flow and Transfer Processes,Computer Science Applications,Process Chemistry and Technology,General Engineering,Instrumentation,General Materials Science

Reference28 articles.

1. Mechanism research of pulsed-laser induced damage to CCD imaging devices;Qiu;Acta Opt. Sin.,2011

2. Damage phenomenon and probability of CCD detectors under single-laser-pulse irradiation;Zhiwu;Infrared Laser Eng.,2013

3. The carrier transportation of photoconductive HgCdTe detector irradiated by CW band-off laser;Tian;J. Infrared Millim. Waves,2012

4. Investigation of thermal effect of HgCdTe Detector with irradiation by off-band CW CO_2 laser;Li;Chin. J. Lasers,2003

5. Experiment study on HgCdTe (PC type) detector system irradiated by laser out of response waveband;Wang;Laser Infrared,2003

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