Surface Critical Phenomena of a Free Bose Gas with Enhanced Hopping at the Surface
arXiv:1805.02883 · doi:10.1007/s10955-018-2198-3
Abstract
We study the Bose--Einstein condensation in a tight-binding model with a hopping rate enhanced only on a surface. We show that this model exhibits two different critical phenomena depending on whether the hopping rate on the surface exceeds the critical value , where is the hopping rate in the bulk. For , normal Bose--Einstein condensation occurs, while the Bose--Einstein condensation for is characterized by the spatial localization of the macroscopic number of particles at the surface. By exactly calculating the surface free energy, we show that for , the singularity of the surface free energy stems from diverging the correlation length in the bulk, while for , it is induced by the coupling effects between the bulk and surface.
34 pages, 4 figures