Felix C L, Bewley W W, Vurgaftman I, Bartolo R E, Stokes D W, Meyer J R, Yang M J, Lee H, Menna R J, Martinelli R U, Garbuzov D Z, Connolly J C, Maiorov M, Sugg A R, Olsen G H
Appl Opt. 2001 Feb 20;40(6):806-11. doi: 10.1364/ao.40.000806.
We review the recent progress of electrically injected and optically pumped mid-IR lasers based on antimonide quantum wells with the type II W configuration. W quantum-well diodes have achieved cw operation up to 195 K at lambda = 3.25 mum. Optically pumped devices that employ the diamond pressure bond heat sink have reached 290 K at 3 mum and 210 K at 6 mum. Pulsed power conversion efficiencies of up to 7% at 220 K have been attained by use of an optical pumping injection cavity approach, in which an etalon cavity for the pump beam significantly enhances its absorptance. The angled-grating distributed-feedback configuration has been used to obtain near-diffraction-limited output for an optical pumping stripe width of 50 mum.
我们回顾了基于具有II型W构型的锑化物量子阱的电注入和光泵浦中红外激光器的最新进展。W量子阱二极管在波长λ = 3.25μm时已实现高达195K的连续波工作。采用金刚石压力键合散热器的光泵浦器件在3μm处达到290K,在6μm处达到210K。通过使用光泵浦注入腔方法,在220K时实现了高达7%的脉冲功率转换效率,其中用于泵浦光束的标准具腔显著提高了其吸收率。倾斜光栅分布反馈构型已被用于在50μm的光泵浦条纹宽度下获得近衍射极限输出。