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测量室温原子中的 Zak 相位。

Measuring Zak phase in room-temperature atoms.

作者信息

Mao Ruosong, Xu Xingqi, Wang Jiefei, Xu Chenran, Qian Gewei, Cai Han, Zhu Shi-Yao, Wang Da-Wei

机构信息

Interdisciplinary Center for Quantum Information, State Key Laboratory of Modern Optical Instrumentation, and Zhejiang Province Key Laboratory of Quantum Technology and Device, School of Physics, Zhejiang University, Hangzhou, 310027, China.

College of Optical Science and Engineering, Zhejiang University, Hangzhou, 310027, China.

出版信息

Light Sci Appl. 2022 Oct 9;11(1):291. doi: 10.1038/s41377-022-00990-7.

Abstract

Cold atoms provide a flexible platform for synthesizing and characterizing topological matter, where geometric phases play a central role. However, cold atoms are intrinsically prone to thermal noise, which can overwhelm the topological response and hamper promised applications. On the other hand, geometric phases also determine the energy spectra of particles subjected to a static force, based on the polarization relation between Wannier-Stark ladders and geometric Zak phases. By exploiting this relation, we develop a method to extract geometric phases from energy spectra of room-temperature superradiance lattices, which are momentum-space lattices of timed Dicke states. In such momentum-space lattices the thermal motion of atoms, instead of being a source of noise, provides effective forces which lead to spectroscopic signatures of the Zak phases. We measure Zak phases directly from the anti-crossings between Wannier-Stark ladders in the Doppler-broadened absorption spectra of superradiance lattices. Our approach paves the way of measuring topological invariants and developing their applications in room-temperature atoms.

摘要

冷原子为合成和表征拓扑物质提供了一个灵活的平台,其中几何相位起着核心作用。然而,冷原子本质上容易受到热噪声的影响,热噪声可能会掩盖拓扑响应并阻碍预期的应用。另一方面,基于万尼尔 - 斯塔克梯级与几何扎克相位之间的极化关系,几何相位还决定了受到静态力作用的粒子的能谱。通过利用这种关系,我们开发了一种从室温超辐射晶格的能谱中提取几何相位的方法,室温超辐射晶格是时间迪克态的动量空间晶格。在这种动量空间晶格中,原子的热运动并非噪声源,而是提供了有效力,从而导致扎克相位的光谱特征。我们直接从超辐射晶格的多普勒加宽吸收光谱中的万尼尔 - 斯塔克梯级之间的反交叉测量扎克相位。我们的方法为测量拓扑不变量并在室温原子中开发其应用铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3e1f/9548506/166c3333447f/41377_2022_990_Fig1_HTML.jpg

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