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Polarization and modal dynamics of multimode vertical-cavity surface-emitting lasers subject to optical feedback and current modulation

机译:受到光反馈和电流调制的多模垂直腔面发射激光器的偏振和模态动力学

摘要

Dynamics of a multi-transverse mode vertical-cavity surface-emitting laser is studied experimentally in a wide parameter range of optical feedback and current modulation. While the orthogonal polarizations manifest anticorrelated feedback dynamics, dynamics of different transverse modes with orthogonal polarizations do not exhibit a clear correlation property. This may be attributed to spatial hole burning effect. As the current modulation becomes strong, both polarization and modal dynamics are modulation dominated. When the modulation frequency is close to the external cavity resonance frequency or its harmonics, feedback dynamics is enhanced. For the modulation frequency close to half integer multiples of the external cavity resonance frequency, feedback feature can be suppressed. The minimum modulation amplitude for suppressing feedback dynamics is measured for each polarization and one of the transverse modes in the polarization, and the results are discussed. Interplay of relaxation oscillation, optical feedback, and current modulation is observed and measured. Our results are compared to the theoretical predictions.
机译:在宽的光反馈和电流调制参数范围内,对多横模垂直腔表面发射激光器的动力学进行了实验研究。虽然正交极化表现出反相关的反馈动力学,但是具有正交极化的不同横向模式的动力学却没有表现出明显的相关特性。这可能归因于空间烧孔效应。随着电流调制变强,极化和模态动力学都受调制支配。当调制频率接近外腔共振频率或其谐波时,反馈动力学特性会增强。对于接近外腔共振频率的一半整数倍的调制频率,可以抑制反馈特性。针对每个极化和极化中的一种横向模式,测量了抑制反馈动态的最小调制幅度,并讨论了结果。观察并测量了弛豫振荡,光反馈和电流调制之间的相互作用。我们的结果与理论预测进行了比较。

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