论文标题

拓扑激光器的长寿命基本激发和光相干性

Long-lived elementary excitations and light coherence in topological lasers

论文作者

Zapletal, Petr, Galilo, Bogdan, Nunnenkamp, Andreas

论文摘要

结合拓扑保护的手性光传输和激光扩增会产生拓扑激光器,其运作不受制造缺陷和缺陷的影响,从而发现了拓扑在新型的非线性非官方状态中的作用。我们研究了基于光子Haldane模型的拓扑激光器,其选择性泵送通过饱和增益描述的手性边缘模式。我们研究了围绕平均场稳态及其对相干性能的后果的基本激发。特别是,我们表明手性边缘模式的杂交产生了长期的基本激发,从而导致发射光场的大相波动和光相干性的降低。与拓扑琐碎的激光器相反,基本激发的寿命对拓扑激光器中的疾病是强大的。但是,寿命在很大程度上取决于激光频率周围的边缘模式分散体。结果,可以通过数量级来降低寿命,以使不同边缘模式的激光降低,从而导致相位波动抑制和发射光的较大连贯性。另一方面,幅度波动和二阶自相关函数同时中度增加。

Combining topologically-protected chiral light transport and laser amplification gives rise to topological lasers, whose operation is immune to fabrication imperfections and defects, uncovering the role of topology in a novel nonlinear non-Hermitian regime. We study a topological laser based on the photonic Haldane model with selective pumping of chiral edge modes described by saturable gain. We investigate elementary excitations around the mean-field steady state and their consequences for the coherence properties. In particular, we show that the hybridization of chiral edge modes gives rise to long-lived elementary excitations, leading to large phase fluctuations in the emitted light field and a decrease of light coherence. In contrast to topologically trivial lasers, the lifetime of elementary excitations is robust against disorder in topological lasers. However, the lifetime strongly depends on the edge-mode dispersion around the lasing frequency. As a result, the lifetime can be reduced by orders of magnitude for lasing of different edge modes, leading to a suppression of phase fluctuations and larger coherence of the emitted light. On the other hand, amplitude fluctuations and the second-order autocorrelation function are moderately increased at the same time.

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