Binary mixtures of condensates in generic confining potentials
arXiv:1105.2482 · doi:10.1088/1751-8113/44/50/505305
Abstract
We study a binary mixture of Bose-Einstein condensates, confined in a generic potential, in the Thomas-Fermi approximation. We search for the zero-temperature ground state of the system, both in the case of fixed numbers of particles and fixed chemical potentials.
20 pages, 2 figures
References in corpus (5)
- Cold Bosons in Optical Lattices
- Ground-state properties of interacting two-component Bose gases in a one-dimensional harmonic trap
- Ground-state properties of interacting two-component Bose gases in a hard-wall trap
- Phase separation of binary condensates in harmonic and lattice potentials
- Coreless vortex dipoles and bubbles in phase-separated binary condensates
Cited by in corpus (11)
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- Bose-Einstein condensation and critical behavior of two-component bosonic gases
- Phase diagram and multicritical behaviors of mixtures of 3D bosonic gases
- Split and overlapped binary solitons in optical lattices
- Domain wall suppression in trapped mixtures of Bose-Einstein condensates
- Nonexponential decay of Feshbach molecules
- Formation, dynamics and stability of coreless vortex dipoles in phase-separated binary condensates
- First-order, continuous, and multicritical Bose-Einstein condensation in Bose mixtures
- Spin-orbit coupled mean-field Bose gas at finite temperature
- Phase diagram of two-component mean-field Bose mixtures