论文标题

非热吸收光谱

Non-Hermitian Absorption Spectroscopy

论文作者

Li, Kai, Xu, Yong

论文摘要

尽管在冷原子系统中已经实验实现了非热汉密尔顿人,但它仍然是一个出色的开放问题,即如何在动量空间中测量其复杂的能量光谱,以获得具有边界的现实系统。鉴于具有开放界限的系统的能量光谱与动量空间中的能源差异截然不同,因此非铁皮皮肤效应的存在可能会使问题更加难以解决。事实甚至可能导致一个观念,即具有开放界限的系统在实验上无法访问动量空间带结构。在这里,我们概括了广泛使用的射频光谱法,以测量玻色子原子或费米原子的非铁量子系统的复杂能光谱的真实和虚构部分。通过将非热系统的能量水平微弱耦合到辅助能级,我们从理论上得出一个公式,表明辅助能量水平上原子的衰减反映了动量空间中能量光谱的真实和虚构部分。我们进一步证明,测量结果与热力学极限中的边界条件无关,提供了有力的证据表明,在实验上可以测量动量空间中的能量光谱。最终,我们将非热吸收光谱光谱方案应用于Hatano-Nelson模型和非热韦尔半学分,以证明其可行性。

While non-Hermitian Hamiltonians have been experimentally realized in cold atom systems, it remains an outstanding open question of how to experimentally measure their complex energy spectra in momentum space for a realistic system with boundaries. The existence of non-Hermitian skin effects may make the question even more difficult to address given the fact that energy spectra for a system with open boundaries are dramatically different from those in momentum space; the fact may even lead to the notion that momentum-space band structures are not experimentally accessible for a system with open boundaries. Here, we generalize the widely used radio-frequency spectroscopy to measure both real and imaginary parts of complex energy spectra of a non-Hermitian quantum system for either bosonic or fermionic atoms. By weakly coupling the energy levels of a non-Hermitian system to auxiliary energy levels, we theoretically derive a formula showing that the decay of atoms on the auxiliary energy levels reflects the real and imaginary parts of energy spectra in momentum space. We further prove that measurement outcomes are independent of boundary conditions in the thermodynamic limit, providing strong evidence that the energy spectrum in momentum space is experimentally measurable. We finally apply our non-Hermitian absorption spectroscopy protocol to the Hatano-Nelson model and non-Hermitian Weyl semimetals to demonstrate its feasibility.

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