论文标题

光的超流量及其在光学网格晶格中的分解

Superfluidity of Light and its Break-Down in Optical Mesh Lattices

论文作者

Wimmer, Martin, Monika, Monika, Carusotto, Iacopo, Peschel, Ulf, Price, Hannah M.

论文摘要

由于量子气和非线性光学器件之间的类比,可以在光线下观察流体动力现象。在这封信中,我们报告了(1+1) - 维非线性光学网格晶格中光的超流体样性能的实验研究,其中光脉冲的到达时间扮演了合成空间尺寸的作用。静止时的空间狭窄缺陷用于在光流体中激发声波并测量声速。通过通过移动缺陷查看沉积能量中的阈值来探测超流体的临界速度,而在该缺陷上方,明显的超流动行为分解了。我们的观察结果将光学网格晶格建立为一个有前途的平台,以研究跨学科感兴趣的新型光学液体,包括非炎症和/或拓扑物理学。

Hydrodynamic phenomena can be observed with light thanks to the analogy between quantum gases and nonlinear optics. In this Letter, we report an experimental study of the superfluid-like properties of light in a (1+1)-dimensional nonlinear optical mesh lattice, where the arrival time of optical pulses plays the role of a synthetic spatial dimension. A spatially narrow defect at rest is used to excite sound waves in the fluid of light and measure the sound speed. The critical velocity for superfluidity is probed by looking at the threshold in the deposited energy by a moving defect, above which the apparent superfluid behaviour breaks down. Our observations establish optical mesh lattices as a promising platform to study fluids of light in novel regimes of interdisciplinary interest, including non-Hermitian and/or topological physics.

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