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首页> 外文期刊>Applied Physics Letters >In-well pumped mid-infrared PbTe/CdTe quantum well vertical external cavity surface emitting lasers
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In-well pumped mid-infrared PbTe/CdTe quantum well vertical external cavity surface emitting lasers

机译:井中泵浦中红外PbTe / CdTe量子阱垂直外腔表面发射激光器

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Optical in-well pumped mid-infrared vertical external cavity surface emitting lasers based on PbTe quantum wells embedded in CdTe barriers are realized. In contrast to the usual ternary barrier materials of lead salt lasers such as PbEuTe of PbSrTe, the combination of narrow-gap PbTe with wide-gap CdTe offers an extremely large carrier confinement, preventing charge carrier leakage from the quantum wells. In addition, optical in-well pumping can be achieved with cost effective and readily available near infrared lasers. Free carrier absorption, which is a strong loss mechanism in the mid-infrared, is strongly reduced due to the insulating property of CdTe. Lasing is observed from 85 K to 300 K covering a wavelength range of 3.3–4.2 μm. The best laser performance is achieved for quantum well thicknesses of 20 nm. At low temperature, the threshold power is around 100 mWP and the output power more than 700 mWP. The significance of various charge carrier loss mechanisms are analyzed by modeling the device performance. Although Auger losses are quite low in IV–VI semiconductors, an Auger coefficient of CA = 3.5 × 10−27 cm6 s−1 was estimated for the laser structure, which is attributed to the large conduction band offset.
机译:实现了基于嵌入CdTe势垒的PbTe量子阱的光泵浦中红外垂直外腔表面发射激光器。与铅盐激光器的常见三元势垒材料(例如PbSrTe的PbEuTe)相比,窄间隙PbTe与宽间隙CdTe的结合提供了非常大的载流子限制,从而防止了载流子从量子阱中泄漏。另外,可以利用成本有效且易于获得的近红外激光器来实现井内光泵浦。由于CdTe的绝缘性,自由载流子的吸收是中红外的强损耗机制,因此大大减少了吸收。从85 K到300 K观察到激光,覆盖范围为3.3-4.2μm。对于20 nm的量子阱厚度,可以获得最佳的激光性能。在低温下,阈值功率约为100 mWP,输出功率超过700 mWP。通过对器件性能进行建模,分析了各种电荷载流子丢失机制的重要性。尽管IV-VI半导体的俄歇损耗非常低,但CA的俄歇系数为= 3.5×10 −27 cm 6 s -1 估计激光结构,这归因于较大的导带偏移。

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