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권우진

Kwon, Woo Jin
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Relaxation of superfluid turbulence in highly oblate Bose-Einstein condensates

Author(s)
Kwon, Woo JinMoon, GeolChoi, Jae-yoonSeo, Sang WonShin, Yong-il
Issued Date
2014-12
DOI
10.1103/PhysRevA.90.063627
URI
https://scholarworks.unist.ac.kr/handle/201301/61567
Citation
PHYSICAL REVIEW A, v.90, no.6, pp.063627
Abstract
We investigate thermal relaxation of superfluid turbulence in a highly oblate Bose-Einstein condensate. We generate turbulent flow in the condensate by sweeping the center region of the condensate with a repulsive optical potential. The turbulent condensate shows a spatially disordered distribution of quantized vortices, and the vortex number of the condensate exhibits nonexponential decay behavior which we attribute to the vortex pair annihilation. The vortex-antivortex collisions in the condensate are identified with crescent-shaped, coalesced vortex cores. We observe that the nonexponential decay of the vortex number is quantitatively well described by a rate equation consisting of one-body and two-body decay terms. In our measurement, we find that the local two-body decay rate is closely proportional to T-2/mu, where T is the temperature and mu is the chemical potential.
Publisher
AMER PHYSICAL SOC
ISSN
1050-2947
Keyword
2-DIMENSIONAL SYSTEMSHELIUMMODEL

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