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Generating arbitrary topological windings of a non-Hermitian band

机译:产生非封闭乐队的任意拓扑绕组

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摘要

The nontrivial topological features in the energy band of non-Hermitian systems provide promising pathways to achieve robust physical behaviors in classical or quantum open systems. A key topological feature of non-Hermitian systems is the nontrivial winding of the energy band in the complex energy plane. We provide experimental demonstrations of such nontrivial winding by implementing non-Hermitian lattice Hamiltonians along a frequency synthetic dimension formed in a ring resonator undergoing simultaneous phase and amplitude modulations, and by directly characterizing the complex band structures. Moreover, we show that the topological winding can be controlled by changing the modulation waveform. Our results allow for the synthesis and characterization of topologically nontrivial phases in nonconservative systems.
机译:非密封系统的能带中的非拓扑功能提供了有希望的途径,以实现经典或量子开放系统中的鲁棒性物理行为。 非密封系统的关键拓扑特征是复能平面中的能带的非旋转绕组。 我们通过在经历同时相位和幅度调制中形成的环谐振器中形成的频率合成尺寸,并通过直接表征复杂带结构来提供这种非封闭型格哈密尼亚的实验示范。 此外,我们表明可以通过改变调制波形来控制拓扑绕组。 我们的结果允许在非服务体系中的拓扑非血管相的合成和表征。

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