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Coherent Pulse Progression of Mid-Infrared Quantum-Cascade Lasers Under Group-Velocity Dispersion and Self-Phase Modulation

机译:群速度色散和自相位调制下中红外量子级联激光器的相干脉冲级数

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摘要

The effect of group-velocity dispersion (GVD) and self-phase modulation (SPM) on the coherent pulse progression in mid-infrared quantum-cascade lasers (QCLs) is investigated. The background saturable absorber (SA) effect is included in this paper. In this case, the lasing pulses can be built up from the instable continuous wave operation condition related to both SA effect and GVD under the influence of a small initial disturbance. The theoretical model is built based on the Maxwell–Bloch formulism accounting for the couplings among the electric field, the polarization, and the population inversion. The pulse evolution in time-spatial domains is simulated by the finite difference method with prior nondimensionalization, which is necessary for convergent solution. It is found that the anomalous GVD, which receives less attention in the study of QCL dynamics, can significantly narrow the spectrum splitting between side modes. The SPM can broaden the linewidth of the spectral modes. Their combined effects can lead the possibility of forming solitons.
机译:研究了群速度色散(GVD)和自相位调制(SPM)对中红外量子级联激光器(QCL)中相干脉冲行进的影响。本文包括背景饱和吸收器(SA)效应。在这种情况下,可以在较小的初始干扰的影响下,从与SA效应和GVD都相关的不稳定连续波工作条件中建立激射脉冲。该理论模型是基于麦克斯韦-布洛赫公式建立的,该公式考虑了电场,极化和种群反转之间的耦合。通过有限差分方法模拟了时空域中的脉冲演化,并进行了先验无量纲化,这对于收敛解是必需的。发现异常的GVD在QCL动力学研究中受到较少的关注,它可以显着缩小副模之间的频谱分裂。 SPM可以加宽光谱模式的线宽。它们的综合作用可能导致形成孤子的可能性。

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