High Power Laser and Particle Beams, Volume. 35, Issue 7, 071005(2023)

Recent progress of high power green laser based on frequency doubling technology for fiber laser

Tian Ma, Fuquan Li, and Honghuan Lin
Author Affiliations
  • Laser Fusion Research Center, CAEP, P. O. Box 919-988, Mianyang 621900, China
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    The green laser can be used for the processing of highly reflective metals such as copper. Compared with the 1 μm laser which is broadly used now, green laser has the absorption efficiency nearly an order of magnitude higher, which can better meet the needs of various fields for the precision processing of highly reflective metals. Thus, the application prospect of high power green laser is very broad. In this paper, recent progress of high power green laser based on frequency doubling technology for fiber laser is investigated in detail. The power of green laser has increased from 100 W to 1 kW, the beam quality is close to the diffraction limit, and the output power is expected to be further improved. There are two technical routes to obtain high power green laser by using fiber laser frequency doubling technology. One is to use high power single beam fiber laser as the fundamental frequency light source and cascade single-pass frequency doubling technology. The other is to use multiple-beam fiber lasers as the fundamental frequency light source, realize beam combining and frequency doubling respectively, or beam combining and frequency doubling at the same time. The former route is simpler than the latter, but the latter has the potential of higher output power. The weak absorption of frequency doubling crystal is the common problem faced by the two technical routes.

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    Tian Ma, Fuquan Li, Honghuan Lin. Recent progress of high power green laser based on frequency doubling technology for fiber laser[J]. High Power Laser and Particle Beams, 2023, 35(7): 071005

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    Paper Information

    Category: High Power Laser Physics and Technology·Overview

    Received: Dec. 1, 2022

    Accepted: Jan. 9, 2023

    Published Online: Jul. 24, 2023

    The Author Email:

    DOI:10.11884/HPLPB202335.220367

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