arXiv:cond-mat/9812271·v1·cond-mat
Backflow and dissipation during the quantum decay of a metastable Fermi liquid
Kei Iida (Univ. of Tokyo)
Abstract
The particle current in a metastable Fermi liquid against a first-order phase transition is calculated at zero temperature. During fluctuations of a droplet of the stable phase, in accordance with the conservation law, not only does an unperturbed current arise from the continuity at the boundary, but a backflow is induced by the density response. Quasiparticles carrying these currents are scattered by the boundary, yielding a dissipative backflow around the droplet. An energy of the hydrodynamic mass flow of the liquid and a friction force exerted on the droplet by the quasiparticles have been obtained in terms of a potential of their interaction with the droplet.
Comments: 5 pages (REVTeX), to be published in Phys. Rev. B