论文标题

用光子合成尺寸模拟拓扑材料

Simulating topological materials with photonic synthetic dimensions in cavities

论文作者

Yang, Mu, Xu, Jin-Shi, Li, Chuan-Feng, Guo, Guang-Can

论文摘要

光子在基本物理和实用技术中起着重要的作用。它们已成为用于量子计算和量子模拟的有吸引力的信息载体之一。最近,由光谐振腔支持的各种光子自由度形成了光子合成尺寸,这有助于用于模拟新拓扑材料的全光平台。光子离散或连续的自由度映射到模拟拓扑物质的晶格或动量,并且光学模式之间的耦合等于准粒子之间的相互作用。成熟的光学调制可以使模拟的哈密顿式的灵活工程。同时,共振检测方法提供了直接的方法来获得相应的能带结构,粒子分布和动力学进化。在这篇综述中,我们概述了光腔中的合成尺寸,包括频率,轨道角动量,时间 - 多头晶格和独立参数。在较低维度的合成系统中已证明了丰富的高维拓扑模型。我们进一步讨论了未来光子合成维的潜在发展。

Photons play essential roles in fundamental physics and practical technologies. They have become one of the attractive informaiton carriers for quantum computation and quantum simulation. Recently, various photonic degrees of freedom supported by optical resonant cavities form photonic synthetic dimensions, which contribute to all-optical platforms for simulating novel topological materials. The photonic discrete or continuous degrees of freedom are mapped to the lattices or momenta of the simulated topological matter, and the couplings between optical modes are equivalent to the interactions among quasi-particles. Mature optical modulations enable flexible engineering of the simulated Hamiltonian. Meanwhile, the resonant detection methods provide direct approaches to obtaining the corresponding energy band structures, particle distributions and dynamical evolutions. In this Review, we give an overview of the synthetic dimensions in optical cavities, including frequency, orbital angular momentum, time-multiplexed lattice, and independent parameters. Abundant higher-dimensional topological models have been demonstrated in lower dimensional synthetic systems. We further discuss the potential development of photonic synthetic dimensions in the future.

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