Universal dynamical scaling of two-dimensional vortices in a strongly interacting fermionic superfluid
POSTER
Abstract
Dynamical formation and annihilation of vortices and antivortices play a key role in the celebrated Berezinskii-Kosterlitz-Thouless (BKT) theory, a universal topological mechanism describing exotic states of matter in low dimensions. Here we study the annihilation dynamics of a large number of vortices and antivortices generated by thermally quenching a fermionic superfluid of Li6 atoms in an oblate optical geometry. Universal algebraic scaling laws in both time and space are experimentally revealed over a wide interaction range, from the attractive to the repulsive side across the Feshbach resonance, and further found to agree with a Glauber dynamics in Monte Carlo simulation of the classical XY model and with field-theoretical calculations. Our work provides a direct demonstration of the universal vortex dynamics underlying the BKT theory.
Authors
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Xiang-Pei Liu
University of Science and Technology of China
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Xing-Can Yao
University of Science and Technology of China
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Youjin Deng
University of Science and Technology of China
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Xiao-Qiong Wang
University of Science and Technology of China
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Yu-Xuan Wang
University of Science and Technology of China
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Chun-Jiong Huang
University of Science and Technology of China
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Xiaopeng Li
Fudan University
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Yu-Ao Chen
University of Science and Technology of China
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Jian-Wei Pan
University of Science and Technology of China