高性能连续波ii型带间级联激光器

R.Q. Yang, J. Bradshaw, J. Bruno, J. Pham, D. Wortman
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引用次数: 0

摘要

带间级联(IC)激光器是一类新型中红外(IR)二极管激光器,它利用了sb基ii型量子阱阶梯中导价带之间的光跃迁。IC激光器利用基于sb的ii型量子阱的间隙断裂排列形成级联级,重用注入的电子,导致量子效率大于传统的统一极限,类似于子带间量子级联(QC)激光器。此外,IC激光器设计可以规避子带间QC激光器的快速声子散射损失,并通过带结构工程抑制俄钻复合,从而降低阈值电流,提高工作效率。最近,我们在ARL的ii型IC激光器(/spl λ //spl sim/3.9 /spl mu/m)的发展方面取得了重大进展,包括创纪录的高差分外量子效率(DEQE) (/spl sim/500%)、峰值输出功率(bbb4w /facet)、峰值功率转换(wall-plug)效率(/spl sim/7%)和再现性。我们报告了在连续波条件下实现高性能中红外(/spl sim/3.7 /spl mu/m) ii型IC激光器的最新进展。
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High-performance continuous wave type-II interband cascade lasers
Interband cascade (IC) lasers that utilize optical transitions between the conduction and valence bands in staircase of Sb-based type-II quantum wells (QWs) represent a new class of mid-infrared (IR) diode lasers. IC lasers reuse injected electrons by taking advantage of the broken gap alignment in Sb-based type-II QWs to form cascade stages, leading to a quantum efficiency greater than the conventional limit of unity, similar to the intersubband quantum cascade (QC) laser. Furthermore, IC laser designs can circumvent the fast phonon scattering loss in intersubband QC lasers and suppress Auger recombination through band-structure engineering, leading to lower threshold currents and more efficient operation. Significant advances in the development of type-II IC lasers (/spl lambda//spl sim/3.9 /spl mu/m) were made recently by us at ARL in terms of record-high differential external quantum efficiency (DEQE) (/spl sim/500%), peak output power (>4 W/facet), peak power conversion (wall-plug) efficiency (/spl sim/7%), and reproducibility. We report our most recent progress in achieving high-performance mid-infrared (/spl sim/3.7 /spl mu/m) type-II IC lasers under continuous-wave conditions.
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