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A 134 MHz bandwidth homodyne optical phase-locked-loop of semiconductor laser diodes

机译:半导体激光二极管的134 MHz带宽零差光学锁相环

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Experiments on homodyne phase-locking of 7.5-MHz spectral linewidth semiconductor laser diodes are reported. Using negative electrical feedback lasers (NEFLs) as master and slave lasers, of which the spectral linewidths were narrowed from 7.5 MHz to 150 kHz, phase-locking was successfully achieved. The bandwidths of optical phase-locking were between 500 kHz and 10 MHz. The estimated phase error variances were between 0.8 rad/sup 2/ and 0.5 rad/sup 2/, respectively. This is the first report of an optical phase-locked loop (OPLL) using NEFLs. A free-running laser diode was phase-locked to a highly coherent master laser with a very fast OPLL. This is the first experimental result to demonstrate an extremely wideband OPLL with a 134-MHz bandwidth. The estimated phase error variance was 0.15 rad/sup 2/. The total phase-locked power of the slave laser was 86% of output.
机译:报告了7.5 MHz谱线宽半导体激光二极管的零差锁相实验。使用负电反馈激光器(NEFL)作为主激光器和从激光器,其光谱线宽从7.5 MHz缩小到150 kHz,可以成功实现锁相。光学锁相的带宽在500 kHz至10 MHz之间。估计的相位误差方差分别在0.8 rad / sup 2 /和0.5 rad / sup 2 /之间。这是使用NEFL的光学锁相环(OPLL)的首次报告。自由运行的激光二极管被锁相到具有非常快速的OPLL的高度相干的主激光器。这是第一个演示具有134MHz带宽的超宽带OPLL的实验结果。估计的相位误差方差为0.15 rad / sup 2 /。从激光器的总锁相功率为输出的86%。

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