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Recent progress in the development of type II interband cascade lasers

机译:II型带间级联激光器的最新进展

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Type-II interband cascade lasers combine the advantage of an interband optical transition with interband tunneling to enable the cascading of type-II quantum well active regions as is done in type-l quantum cascade laser. The relatively high radiative efficiency resulting from interband optical transitions translates into very low-threshold current densities, and when combined with the high quantum efficiency of cascade lasers, this diode laser design has the potential to operate under cw conditions at room temperature with high output power. Experimental results have already demonstrated some of this potential including high differential external quantum efficiency (> 600%), high peak output power (similar to6 W/facet at 80 K), high cw power conversion efficiency (> 17% at 80 K), and operation at 300 K under pulsed conditions. Recent work aimed at reducing device thermal resistance and increasing cw operating temperature is reviewed including the demonstration of significant reductions in thermal resistance (averaging 25 K/W or 40% for 1-mm-long devices), 80 K cw operation at 3.4 mum with high-power conversion efficiency (23%) and high differential external quantum efficiency (532%), and cw operation up to 214 K. (C) 2003 Elsevier B.V. All rights reserved. [References: 10]
机译:II型带间级联激光器结合了带间光学跃迁和带间隧穿的优势,可以像II型量子级联激光器那样实现II型量子阱有源区的级联。带内光跃迁产生的较高辐射效率转化为非常低的阈值电流密度,当与级联激光器的高量子效率结合使用时,这种二极管激光器设计具有在室温下连续波条件下以高输出功率工作的潜力。 。实验结果已经证明了这种潜力,其中包括高差分外部量子效率(> 600%),高峰值输出功率(与80 K下的6 W / facet相似),高CW功率转换效率(在80 K下> 17%),并在脉冲条件下以300 K运行。回顾了旨在降低器件热阻和提高CW工作温度的最新工作,其中包括热阻显着降低的证明(对于1毫米长的器件,平均降低25 K / W或40%),在3.4 mum的温度下80 K cw的操作高功率转换效率(23%)和高差分外部量子效率(532%),以及连续工作频率高达214K。(C)2003 Elsevier BV保留所有权利。 [参考:10]

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