On the dipole moment of quantized vortices generated by flows
Abstract
The polarization charge of an inhomogeneous superfluid system is expressed as a function of the order parameter . It is shown that if the order parameter changes on macroscopic distances, the polarization charge is proportional to , and the polarization is proportional to , where is the density of the system. For noninteracting atoms the proportionality coefficient is independent of density, and in the presence of interaction is proportional to . The change of the Bose gas density is found in the presence of a flow passing the vortex. It is found that a vortex in a superfluid film creates an electric potential above the film. This potential has the form of a potential of a dipole, allowing to assign a dipole moment to the vortex. The dipole moment is a sum of two terms, the first one is proportional to the relative flow velocity and the second one is proportional to , where is the vortex circulation.
Keywords
Cite
@article{arxiv.1512.04747,
title = {On the dipole moment of quantized vortices generated by flows},
author = {S. I. Shevchenko and A. M. Konstantinov},
journal= {arXiv preprint arXiv:1512.04747},
year = {2016}
}
Comments
6 pages