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A Low-Threshold Miniaturized Plasmonic Nanowire Laser with High-Reflectivity Metal Mirrors

机译:具有高反射金属镜的低阈值小型化纳米线激光器

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摘要

A reflectivity-enhanced hybrid plasmonic GaAs/AlGaAs core-shell nanowire laser is proposed and studied by 3D finite-difference time-domain simulations. The results demonstrate that by introducing thin metal mirrors at both ends, the end facet reflectivity of nanowire is increased by 30–140%, resulting in a much stronger optical feedback. Due to the enhanced interaction between the surface charge oscillation and light, the electric field intensity inside the dielectric gap layer increases, resulting in a much lower threshold gain. For a small diameter in the range of 100–150 nm, the threshold gain is significantly reduced to 60–80% that of nanowire without mirrors. Moreover, as the mode energy is mainly concentrated in the gap between the nanowire and metal substrate, the output power maintains >60% that of nanowire without mirrors in the diameter range of 100–150 nm. The low-threshold miniaturized plasmonic nanowire laser with simple processing technology is promising for low-consumption ultra-compact optoelectronic integrated circuits and on-chip communications.
机译:通过3D有限差分时域模拟提出并研究了反射率增强的混合等离子体GaAs / AlgaAs核心壳纳米线激光。结果表明,通过在两端引入薄金属镜,纳米线的端面反射率增加了30-140%,导致光反馈更强。由于表面电荷振荡和光之间的相互作用增强,介电间隙层内的电场强度增加,导致阈值增益更低。对于100-150nm范围内的小直径,阈值增益明显减少到没有镜子的纳米线的60-80%。此外,随着模式能量主要集中在纳米线和金属基板之间的间隙中,输出功率保持纳米线的60%,而无需镜子的直径范围为100-150nm。具有简单加工技术的低阈值小型化等级纳米线激光器是对低消耗超细光电集成电路和片上通信的有前途。

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