Critical velocity for wake vortex generation behind a plate in a superflow
arXiv:2412.07368
Abstract
We study theoretically the critical velocity for quantum vortex generation by a thin plate-shaped obstacle moving through a uniform Bose-Einstein condensate. Our results based on the Gross-Pitaevskii theory reveal that the critical velocity monotonically decreases with increasing plate size . In the limit of large , the critical velocity is asymptotic to predicted by the potential flow theory for an incompressible ideal fluid with a phenomenological length correction. As decreases, however, the incompressible analysis breaks down quantitatively. By performing a perturbative analysis to incorporate compressibility into the potential flow theory, we have successfully reproduced the numerical results analytically over a wide parameter range. It is also shown that the critical velocity increases with finite plate thickness.
9 pages, 3 figures