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光子系统中弗洛凯相的证据。

Evidence of a Floquet Phase in a Photonic System.

作者信息

Raposo Ernesto P, González Iván R R, Macêdo A M S, Lima Bismarck C, Kashyap Raman, Menezes Leonardo de S, Gomes Anderson S L

机构信息

Laboratório de Física Teórica e Computacional, Departamento de Física, Universidade Federal de Pernambuco, 50670-901 Recife, Pernambuco, Brazil.

Departamento de Física, Universidade Federal de Pernambuco, 50670-901 Recife, Pernambuco, Brazil.

出版信息

Phys Rev Lett. 2019 Apr 12;122(14):143903. doi: 10.1103/PhysRevLett.122.143903.

Abstract

The ground breaking extension of the key concept of phase structure to nonequilibrium regimes was only recently achieved in Floquet systems, characterized by a time-dependent quantum Hamiltonian with a periodic driving source. However, despite the theoretical advances, only very few systems are known to display experimental Floquet phases, not one of them employing a laser emission-based mechanism. Here we report the first experimental observation of a Floquet phase in a photonic system, a disordered fiber laser with spatial eigenmode localization. We apply a periodically oscillating cw pumping source that drives the random couplings of the Floquet Hamiltonian. A photonic Floquet spin-glass phase is demonstrated in the random-lasing regime by extensive measurements of the Parisi overlap parameter and asymmetry properties of its distribution. In contrast, in the fluorescent regime below threshold, the absence of mode localization prevents the stabilization of a Floquet phase. Our results are nicely described by theoretical arguments.

摘要

关键的相结构概念向非平衡态的开创性扩展直到最近才在弗洛凯系统中实现,该系统的特征是具有周期性驱动源的含时量子哈密顿量。然而,尽管有理论进展,但已知只有极少数系统能展现出实验性的弗洛凯相,其中没有一个采用基于激光发射的机制。在此,我们报告了在光子系统中首次对弗洛凯相的实验观测,该光子系统是一个具有空间本征模局域化的无序光纤激光器。我们应用一个周期性振荡的连续波泵浦源来驱动弗洛凯哈密顿量的随机耦合。通过对帕里西重叠参数及其分布的不对称特性进行广泛测量,在随机激光区域证明了光子弗洛凯自旋玻璃相。相比之下,在低于阈值的荧光区域,模式局域化的缺失阻止了弗洛凯相的稳定。我们的结果可以用理论论证很好地描述。

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