Optimal lattice depth on lifetime of D-band ultracold atoms in a triangular optical lattice

Author:

Shui Hongmian1,Lai Chi-Kin,Yu Zhongcheng,Tian Jinyuan,Wu Chengyang,Chen Xuzong,Zhou Xiaoji12

Affiliation:

1. Peking University

2. Shanxi University

Abstract

Ultracold atoms in optical lattices are a flexible and effective platform for quantum precision measurement, and the lifetime of high-band atoms is an essential parameter for the performance of quantum sensors. In this work, we investigate the relationship between the lattice depth and the lifetime of D-band atoms in a triangular optical lattice and show that there is an optimal lattice depth for the maximum lifetime. After loading the Bose-Einstein condensate into D band of optical lattice by shortcut method, we observe the atomic distribution in quasi-momentum space for the different evolution time, and measure the atomic lifetime at D band with different lattice depths. The lifetime is maximized at an optimal lattice depth, where the overlaps between the wave function of D band and other bands (mainly S band) are minimized. Additionally, we discuss the influence of atomic temperature on lifetime. These experimental results are in agreement with our numerical simulations. This work paves the way to improve coherence properties of optical lattices, and contributes to the implications for the development of quantum precision measurement, quantum communication, and quantum computing.

Funder

National Key Research and Development Program of China

National Natural Science Foundation of China

Science and Technology Major Project of Shanxi

Space Application System of China Manned Space Program

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics

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