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Numerical characterization of intensity and frequency fluctuations associated with mode hopping and single-mode jittering in semiconductor lasers

机译:与半导体激光器中模式跳变和单模抖动相关的强度和频率波动的数值表征

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This paper reports on numerical characterization of intensity and frequency fluctuations associated with mode hopping and single-mode jittering in semiconductor lasers. A new numerical approach has been applied that takes into account the suppression effects of gain and the intrinsic fluctuations in both intensities and phases of the oscillating modes. The temporal trajectories of mode intensities are investigated. The fluctuations are characterized in terms of their correlation functions and statistical distributions. The intensity and frequency noise contents of fluctuations are also identified. The obtained characteristics are compared with those of stable single-mode operation (SSMO) in nearly-single-mode lasers. The case of multi-mode hopping in multi-mode lasers is also analyzed. The cross-correlation analyses confirm strong anti-correlations among intensity fluctuations of the hopping and jittering modes. The relative intensity noise (RIN) in both total output and modes are most enhanced under mode hopping, and so is the frequency noise (FN). Although the jittering operation induces lower noise levels in the low-frequency regime, the noise is higher than the quantum level characterizing the SSMO. The cross-correlations among the hopping modes are stronger and the intensity noise levels are higher in the case of two-mode hopping in nearly-single-mode lasers than those in the case of multi-mode hopping in multi-mode lasers. The explored characteristics are compared with the experimental observations. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 33]
机译:本文报道了半导体激光器中与模式跳变和单模抖动相关的强度和频率波动的数值表征。应用了一种新的数值方法,该方法考虑了增益的抑制作用以及振荡模式的强度和相位的固有波动。研究了模态强度的时间轨迹。根据波动的相关函数和统计分布来表征波动。还确定了波动的强度和频率噪声含量。将获得的特性与近单模激光器中的稳定单模操作(SSMO)的特性进行比较。还分析了多模激光器中多模跳变的情况。互相关分析证实了跳跃模式和抖动模式的强度波动之间的强反相关性。在模式跳变下,总输出和模式下的相对强度噪声(RIN)都会得到最大增强,频率噪声(FN)也会得到最大增强。尽管抖动操作在低频状态下会引起较低的噪声水平,但该噪声高于表征SSMO的量子水平。与在多模式激光器中进行多模跳跃的情况相比,在近单模式激光器中进行双模跳跃的情况下,跳跃模式之间的互相关性更强并且强度噪声水平更高。将探索的特征与实验观察结果进行比较。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:33]

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