2311 Abstract
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Research Progress on Impact Factors to Output Power of Semiconductor Laser(PDF)

MATERIALS CHINA[ISSN:1674-3962/CN:61-1473/TG]

Issue:
2021年第03期
Page:
218-224
Research Field:
Publishing date:

Info

Title:
Research Progress on Impact Factors to Output Power of Semiconductor Laser
Author(s):
HUANG Jiayao1SHANG Lin1MA Shufang1ZHANG Shuai1LIU Qingming1 HOU Yanyan1 KONG Qingbo1XU Bingshe12
(1. Institute of Atomic and Molecular Science,Shaanxi University of Science and Technology,Xi’an 710021,China) (2. Key Laboratory of Interface Science and Engineering in Advanced Materials of Ministry of Education, Taiyuan University of Technology,Taiyuan 030024,China)
Keywords:
high-power semiconductor laser output powercatastrophic optical damage carrier leakage two-photon absorptionlongitudinal spatial hole burning
CLC:

PACS:
TN248.4
DOI:
10.7502/j.issn.1674-3962.201908013
DocumentCode:

Abstract:
High-power semiconductor lasers are indispensably fundamental and essential components in the fields of equipment for modern laser processing, laser remanufacturing, laser medical treatment, laser displaying and national defense. They have extensive applications in industrial and defense fields. In order to increase the output power of semiconductor lasers, it is necessary to determine the impact factors of output power. Then, the output power improvement might be achieved through optimizing materials, structure and preparation process of semiconductor laser. Therefore, it is of great significance to study the impact factors on output power of semiconductor lasers. In this paper, the limitations for output power improving of GaAs-based high-power semiconductor lasers were reviewed. The research progress on catastrophic optical damage, carrier leakage, two-photon absorption and longitudinal spatial hole burning of GaAs-based high-power semiconductor lasers was summarized. It might accelerate the output power increasement, structural design optimization, materials quality improvement, and epitaxy technology promotion of semiconductor lasers.

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Last Update: 2021-02-26