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Epitaxial-side-down-mounted interband cascade lasers

机译:外延侧安装的间带级联激光器

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A rapid series of recent performance advances have established the interband cascade laser (ICL) as a practical midwave infrared (mid-IR) diode source that may be expected to find broad use in a variety of applications ranging from infrared countermeasures to chemical spectroscopy. The ICL is effectively a hybrid of the conventional diode laser, in that injected electrons and holes recombine to create photons, and the quantum cascade laser (QCL), in that a multi-stage staircase of active quantum wells is connected in series. The ICL also differs from both, however, in that most of the electrons and holes needed for lasing are created internally at semimetallic interfaces separating the stages rather than being injected from the contacts. The ICL performance recently improved dramatically when “carrier rebalancing”, via heavy n-type doping of the electron injector regions, was introduced to equalize the electron and hole populations in the active quantum wells [1]. Recent publications have reported cw operation up to 109 °C, cw output power up to 158 mW at room temperature (RT, taken here to be 25 °C), RT cw wallplug efficiency up to 13.5%, RT cw drive power as low as 29 mW (more than 20 times lower than the best QCLs results reported to date), and RT cw operation to wavelengths as long as 5.7 μm [1,2]. Here we discuss further improvements of the lasing characteristics that occur when the ICLs are mounted epitaxial-side-down (epi-down), using a proprietary NRL procedure that combines high performance with high processing yield.
机译:最近的近期性能前进的快速系列已经建立了作为实际的中空红外(中外IR)二极管源的Interband级联激光(ICL),这些二极管源可以预期在各种应用中寻找广泛的应用,该应用范围从红外对策到化学光谱。 ICL有效地是传统二极管激光器的混合,其中注入的电子和孔重组以产生光子,以及量子级联激光器(QCL),其中有源量子阱的多级楼梯串联连接。 ICL也与两者不同,因为在分离阶段的半金属接口处,在内部形成激光所需的大多数电子和孔,而不是从触点注入。引入了通过重质N型掺杂的电子注射器区域的“载波再平衡”,ICL性能最近急剧提高,以均衡活性量子阱中的电子和孔群[1]。最近的出版物报告的CW操作高达109°C,CW输出功率高达158兆瓦的室温(RT,拍摄为25°C),RT CW壁图效率高达13.5%,RT CW驱动功率低至29兆瓦(比迄今为止报告的最佳QCLS结果低20倍),RT CW操作与波长的动作长达5.7μm[1,2]。在这里,我们讨论了使用高处理产量的高性能的专有NRL程序,进一步改善了当ICL嵌入的外延(epi-Down)进行外延落下(epi-Down)时发生的激光特性。

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