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首页> 外文期刊>International Journal of High Speed Electronics and Systems: Devices, Integrated Circuits and Systems, Optical and Quantum Electronics >PROGRESS IN DEVELOPMENT OF ROOM TEMPERATURE CW GASB BASED DIODE LASERS FOR 2-3.5 μM SPECTRAL REGION
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PROGRESS IN DEVELOPMENT OF ROOM TEMPERATURE CW GASB BASED DIODE LASERS FOR 2-3.5 μM SPECTRAL REGION

机译:用于2-3.5μM光谱区域的基于室温CW GASB的二极管激光的开发进展

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摘要

Recent progress and state of GaSb based type-I lasers emitting in spectral range from 2 to 3.5 μm is reviewed. For lasers emitting near 2 μm an optimization of waveguide core width and asymmetry allowed reduction of far field divergence angle down to 40-50 degrees which is important for improving coupling efficiency to optical fiber. As emission wavelength increases laser characteristics degrade due to insufficient hole confinement, increased Auger recombination and deteriorated transport through the waveguide layer. While Auger recombination is thought to be an ultimate limiting factor to the performance of these narrow bandgap interband lasers we demonstrate that continuous improvements in laser characteristics are still possible by increasing hole confinement and optimizing transport properties of the waveguide layer. We achieved 190, 170 and 50 mW of maximum CW power at 3.1, 3.2 and 3.32 μm wavelengths respectively. These are the highest CW powers reported to date in this spectral range and constitute 2.5-fold improvement compared to previously reported devices.
机译:综述了在2至3.5μm光谱范围内发射的基于GaSb的I型激光器的最新进展和状态。对于发射接近2μm的激光器,优化波导芯宽度和不对称性可以将远场发散角减小到40-50度,这对于提高与光纤的耦合效率非常重要。随着发射波长的增加,激光特性会由于空穴限制不足,俄歇复合体的增加以及通过波导层的传输性能下降而降低。尽管俄歇复合被认为是这些窄带隙带间激光器性能的最终限制因素,但我们证明通过增加空穴限制和优化波导层的传输性能,仍可以不断改善激光器特性。我们分别在3.1、3.2和3.32μm波长处实现了190、170和50 mW的最大连续波功率。这些是迄今为止在该光谱范围内报道的最高连续波功率,与先前报道的器件相比,构成了2.5倍的改进。

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