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首页> 外文期刊>IEEE journal of selected topics in quantum electronics >Low-threshold and high-efficiency operation of distributed reflector lasers with width-modulated wirelike active regions
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Low-threshold and high-efficiency operation of distributed reflector lasers with width-modulated wirelike active regions

机译:具有宽度调制线状有源区的分布式反射器激光器的低阈值和高效率操作

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摘要

1.55-/spl mu/m-wavelength distributed reflector (DR) lasers with low threshold and high efficiency were realized which consisted of a distributed feedback (DFB) grating and high-reflection distributed Bragg reflector (DBR) sections integrated by utilizing the lateral quantum confinement effect in a quantum-wire structure. In order to realize a high-performance DR laser, the high-reflection DBR structure was investigated theoretically and experimentally and could be fabricated with a reflectivity of over 90%, taking into consideration the absorption in the active layers. The highest differential quantum efficiency of 36% from the front facet was obtained for the 4.4-/spl mu/m stripe width and 300-/spl mu/m DFB section length under room temperature (RT) and continuous-wave (CW) conditions. Moreover, the lowest threshold current of 1.5 mA was obtained for the 3.4-/spl mu/m stripe width and 150-/spl mu/m DFB length.
机译:实现了低阈值和高效率的1.55 / spl微米/米波长的分布式反射器(DR)激光器,该激光器由分布式反馈(DFB)光栅和利用侧向量子集成的高反射分布式布拉格反射器(DBR)部分组成限制在量子线结构中。为了实现高性能的DR激光器,在理论上和实验上对高反射DBR结构进行了研究,考虑到有源层中的吸收,可以制造反射率超过90%的DBR结构。在室温(RT)和连续波(CW)条件下,对于4.4- / splμ/ m的条带宽度和300- / splμ/ m的DFB截面长度,从正面获得的最高微分量子效率为36% 。此外,对于3.4- / spl mu / m的条带宽度和150- / spl mu / m的DFB长度,获得了1.5 mA的最低阈值电流。

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