A Model of Dual Fabry-Perot Etalon-Based External-Cavity Tunable Laser Us...
Internal motion within pulsating pure-quartic soliton molecules in a fibe...
Enhanced light emission of germanium light-emitting-diode on 150 mm germa...
The Fabrication of GaN Nanostructures Using Cost-Effective Methods for Ap...
Negative-to-Positive Tunnel Magnetoresistance in van der Waals Fe3GeTe2/C...
Quantum Light Source Based on Semiconductor Quantum Dots: A Review
A High-Reliability RF MEMS Metal-Contact Switch Based on Al-Sc Alloy
Development of a Mode-Locked Fiber Laser Utilizing a Niobium Diselenide S...
Development of Multiple Fano-Resonance-Based All-Dielectric Metastructure...
Traffic Vibration Signal Analysis of DAS Fiber Optic Cables with Differen...
官方微信
友情链接

A 355 nm ultraviolet femtosecond laser through second harmonic generation using K3B6O10Br nonlinear optical crystal

2020-10-29

Author(s): Zhang, L (Zhang, Ling); Zhang, M (Zhang, Min); Wang, LR (Wang, Lirong); Chen, XD (Chen, Xudong); Jiao, JH (Jiao, Jiahao); Pan, SL (Pan, Shilie); Tang, GX (Tang, Guangxin); Zhang, XW (Zhang, Xingwang); Chen, ZY (Chen, Zhaoyang); Zhang, X (Zhang, Xin)

Source: OPTICAL MATERIALS Volume: 107 Article Number: 110088 DOI: 10.1016/j.optmat.2020.110088 Published: SEP 2020

Abstract: We demonstrate the 355 nm ultraviolet (UV) femtosecond (fs) laser through second harmonic generation using a type-I phase-matched nonlinear optical crystal of K3B6O10Br (KBOB). The effects of the length of nonlinear optical crystals and the focal length of lenses on the output power and conversion efficiency were investigated systematically. The maximum output power of 265 mW UV fs laser at 355 nm was obtained with a pump of 1.408 W fs laser at 710 nm with a repetition rate of 80 MHz. The corresponding optical conversion efficiency was 18.8%. The experimental results show that KBOB crystal is a promising crystal in generating high-power UV fs laser because of its excellent nonlinear optical properties.

Accession Number: WOS:000577080600021

ISSN: 0925-3467

eISSN: 1873-1252

Full Text: https://www.sciencedirect.com/science/article/pii/S0925346720304316?via%3Dihub



关于我们
下载视频观看
联系方式
通信地址

北京市海淀区清华东路甲35号(林大北路中段) 北京912信箱 (100083)

电话

010-82304210/010-82305052(传真)

E-mail

semi@semi.ac.cn

交通地图
版权所有 中国科学院半导体研究所

备案号:京ICP备05085259-1号 京公网安备110402500052 中国科学院半导体所声明