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Two-state semiconductor laser self-mixing velocimetry exploiting coupled quantum-dot emission-states: experiment simulation and theory

机译:利用耦合量子点发射态的二态半导体激光自混合测速:实验仿真与理论

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摘要

We exploit the coupled emission-states of a single-chip semiconductor InAs/GaAs quantum-dot laser emitting simultaneously on ground-state (λGS = 1245 nm) and excited-state (λES = 1175 nm) to demonstrate coupled-two-state self-mixing velocimetry for a moving diffuse reflector. A 13 Hz-narrow Doppler beat frequency signal at 317 Hz is obtained for a reflector velocity of 3 mm/s, which exemplifies a 66-fold improvement in width as compared to single-wavelength self-mixing velocimetry. Simulation results reveal the physical origin of this signal, the coupling of excited-state and ground-state photons via the carriers, which is unique for quantum-dot lasers and reproduce the experimental results with excellent agreement.
机译:我们利用在基态(λGS= 1245 nm)和激发态(λES= 1175 nm)上同时发射的单片半导体InAs / GaAs量子点激光器的耦合发射态来演示耦合二态自移动漫反射器的混合测速。对于3 mm / s的反射器速度,获得了317 Hz的13 Hz窄多普勒拍频信号,与单波长自混合测速仪相比,其宽度提高了66倍。仿真结果揭示了该信号的物理起源,激发态光子和基态光子通过载流子的耦合,这对于量子点激光器是独一无二的,并且以极好的一致性再现了实验结果。

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