Ground state of Rydberg-dressed Bose gas confined in a toroidal trap

Author:

Wang Lin-Xue,Yang Hong-Li,Liu Hui,Chen Si-Lin,Wang Ya-Jun,Zhang Xiao-Fei

Abstract

Abstract The experimental realization of Rydberg dressing technology in ultracold atomic systems provides another superior platform for studying novel states of matter and macroscopic quantum phenomena. In this work, based on the mean-field theory, we have investigated the ground-state phases of a two-component Bose–Einstein condensate with Rydberg interaction and confined in a toroidal trap. The effects of the Rydberg interaction and external potential, especially the Rydberg blockade radius, on the ground-state structure of such a system have been investigated in full parameter space. Our results show that the Rydberg blockade radius, which can be regarded as another controllable parameter, can be used to obtain a variety of ground-state phases. More interestingly, it is found that for weak Rydberg interactions, the Rydberg blockade radius breaks the spontaneous rotational symmetry of the system, leading to the formation of a discrete unit cell structure. For strongly interacting cases, it can be used to realize different orders of discrete rotational symmetry breaking.

Funder

Shaanxi Fundamental Science Research Project for Mathematics and Physics

Youth Innovation Team of Shaanxi Universities

Key Research Program of Frontier Sciences of Chinese Academy of Sciences

National Natural Science Foundation of China

Publisher

IOP Publishing

Subject

Physics and Astronomy (miscellaneous)

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