Tiana-Alsina Jordi, Masoller Cristina
Department de Física Aplicada, Facultat de Fisica, Universitat de Barcelona, Marti i Franques 1, 08028, Barcelona, Spain.
Departament de Fisica, Universitat Politecnica de Catalunya, Rambla Sant Nebridi 22, 08222, Terrassa, Barcelona, Spain.
Sci Rep. 2022 Mar 22;12(1):4914. doi: 10.1038/s41598-022-08776-y.
Time crystal oscillations in interacting, periodically driven many-particle systems are highly regular oscillations that persist for long periods of time, are robust to perturbations, and whose frequency differs from the frequency of the driving signal. Making use of underlying similarities of spatially-extended systems and time-delayed systems (TDSs), we present an experimental demonstration of time-crystal-like behavior in a stochastic, weakly modulated TDS. We consider a semiconductor laser near threshold with delayed feedback, whose output intensity shows abrupt spikes at irregular times. When the laser current is driven with a small-amplitude periodic signal we show that the interaction of delayed feedback and modulation can generate long-range regularity in the timing of the spikes, which lock to the modulation and, despite the presence of noise, remain in phase over thousands of modulation cycles. With pulsed modulation we find harmonic and subharmonic locking, while with sinusoidal modulation, we find only subharmonic locking, which is a characteristic feature of time-crystal behavior.
在相互作用的、周期性驱动的多粒子系统中,时间晶体振荡是高度规则的振荡,能长时间持续,对扰动具有鲁棒性,且其频率与驱动信号的频率不同。利用空间扩展系统和时间延迟系统(TDS)的潜在相似性,我们在一个随机的、弱调制的TDS中给出了类时间晶体行为的实验演示。我们考虑一个接近阈值且具有延迟反馈的半导体激光器,其输出强度在不规则时间出现突然的尖峰。当用一个小幅度周期性信号驱动激光电流时,我们表明延迟反馈和调制的相互作用可以在尖峰的时间上产生长程规律性,这些尖峰锁定到调制上,并且尽管存在噪声,在数千个调制周期内仍保持同相。对于脉冲调制,我们发现了谐波和次谐波锁定,而对于正弦调制,我们只发现了次谐波锁定,这是时间晶体行为的一个特征。