arXiv · 0803.2442
d-wave collapse and explosion of a dipolar Bose-Einstein condensate
Abstract
We investigate the collapse dynamics of a dipolar condensate of 52Cr atoms when the s-wave scattering length characterizing the contact interaction is reduced below a critical value. A complex dynamics, involving an anisotropic, d-wave symmetric explosion of the condensate, is observed. The atom number decreases abruptly during the collapse. We find good agreement between our experimental results and those of a numerical simulation of the three-dimensional Gross-Pitaevskii equation, including contact and dipolar interactions as well as three-body losses. The simulation indicates that the collapse induces the formation of two vortex rings with opposite circulations.
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Thierry Lahaye, Jonas Metz, Bernd Froehlich, Tobias Koch, Maximilian Meister, Axel Griesmaier, Tilman Pfau, Hiroki Saito, Yuki Kawaguchi, Masahito Ueda. 2008-08-22. d-wave collapse and explosion of a dipolar Bose-Einstein condensate. https://doi.org/10.1103/physrevlett.101.080401
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