Nonreciprocal dynamics of noninteracting ultracold atoms in a momentum lattice

Author:

Ren Chaojie,Li Yuqing1ORCID,Wu Jizhou1,Zhao Hongxing,Wang Yunfei,Liu Wenliang,Li Peng2,Fu Yongming2ORCID,Xiao Liantuan,Ma Jie1,Jia Suotang

Affiliation:

1. Hefei National Laboratory

2. Shanxi University

Abstract

Realization of nonreciprocal transport is of great importance in the development of devices and systems that require the directional manipulation of signals or particles in information processing and modern physics. For ultracold atomic systems, the approaches based on synthetic dimensions have led to rapid advances in engineering quantum transport. Here, we use laser-coupled discrete momentum states of noninteracting ultracold atoms to synthesize a momentum lattice, and construct a closed ring with controllable tunneling phase in the momentum lattice. We measure the density evolution of atoms in the synthetic lattice with the single-site resolution, and observe the nonreciprocal dynamics by controlling the tunneling phase. We show the effect of both the applied phase and the coupling strength between two distinct population regions on the population distribution of atoms in the momentum lattice, and provide the optimal parameters for achieving the nonreciprocal transport.

Funder

Innovation Program for Quantum Science and Technology

National Key Research and Development Program of China

National Natural Science Foundation of China

Applied Basic Research Project of Shanxi Province, China

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics

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