English

Measuring Zak phase in room-temperature atoms

Quantum Gases 2022-10-14 v2 Optics Quantum Physics

Abstract

Cold atoms provide a flexible platform for synthesizing and characterizing topolog-ical 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 de-termine the energy spectra of particles subjected to a static force, based on the po-larization relation between Wannier-Stark ladders and geometric Zak phases. By exploiting this relation, we develop a method to extract geometric phases from en-ergy 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 direct-ly 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.

Keywords

Cite

@article{arxiv.2111.12378,
  title  = {Measuring Zak phase in room-temperature atoms},
  author = {Ruosong Mao and Xingqi Xu and Jiefei Wang and Chenran Xu and Gewei Qian and Han Cai and Shi-Yao Zhu and Da-Wei Wang},
  journal= {arXiv preprint arXiv:2111.12378},
  year   = {2022}
}

Comments

28 pages, 5 figures