Macroscopic Quantum Tunnelling in Rotating Bose-Einstein Condensates
Yuan-Xiu Miao, Hui Zhai, Hong-Yu Yang, Lee Chang (Center for, Advanced Study, P.R China)

TL;DR
This paper explores macroscopic quantum tunnelling and phase coherence in rotating Bose-Einstein condensates using mean field theory, covering static and dynamic scenarios.
Contribution
It provides a theoretical analysis of quantum tunnelling phenomena in rotating BECs, highlighting new insights into their phase coherence properties.
Findings
Demonstrates conditions for macroscopic quantum tunnelling in rotating BECs
Analyzes phase coherence in static and dynamic rotating condensates
Provides mean field theoretical framework for these phenomena
Abstract
In this paper we investigate the macroscopic quantum tunnelling and the phase coherence property of the rotating Bose-Einstein condensates in both static and dynamic cases by using the mean field theory.
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