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Modeling of intensity noise including squeezing in DFB and Fabry-Perot semiconductor laser diodes

机译:强度噪声建模,包括DFB和Fabry-Perot半导体激光二极管中的压缩

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摘要

A new time-domain model using the quantum formalism of the positive-P distribution is used to investigate squeezing in laser diodes, taking into account longitudinal hole burning and distributed noise sources, under steady-state and large-signal modulation. Simulations indicate that the laser structure determines the lowest achievable intensity noise. With losses present or power escaping from the rear facet, this minimum noise may be much higher than expected from the device quantum efficiency. Squeezing appears more difficult in DFB lasers than in Fabry-Perot lasers in our simulations. Mode-partition noise is removed by low-loss passive DBR sections, and such laser diodes are promising sources with low-intensity noise. Intensity noise in the large-signal dynamic regime is also simulated, showing that intensity-squeezed light output is possible.
机译:在正态和大信号调制下,考虑到纵向空穴燃烧和分布的噪声源,使用了正P分布的量子形式主义的新时域模型来研究激光二极管中的压缩。仿真表明,激光结构确定了最低的可达到的强度噪声。由于存在损耗或功率从后端面逸出,该最小噪声可能会比器件量子效率预期的要高得多。在我们的模拟中,DFB激光器中的挤压似乎比Fabry-Perot激光器中的困难更大。低损耗无源DBR部分可消除模式分区噪声,而这种激光二极管是具有低强度噪声的有希望的光源。还对大信号动态状态下的强度噪声进行了仿真,表明强度压缩的光输出是可能的。

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