Densities probabilities of a Bose-Fermi Mixture in 1D Double well potential
arXiv:2110.10240
Abstract
We use the two mode approximation for a interacting one-dimensional spinless soft core bosons and one half spin fermions in a double-well potential with a large central barrier. We include all the on-site boson-boson, fermion-fermion and boson-fermion repulsive contact potential represented by delta-function and considered bosonic and fermionic isotopes of ytterbium(Yb) and respectively. By means of the approximation, we find that in the regime give rise to a immiscible phase and in the regime give rise to a miscible phase, that is characterized by a temporal overlap of the bosonic and fermionic probability densities. We also report that due to the Bose-Fermi interaction, the system presents an apparent destruction of the collapse-revival oscillation of boson density probability at least in the ranges investigated.
References in corpus (9)
- Squeezing and entanglement in a Bose-Einstein condensate
- Time-resolved Observation and Control of Superexchange Interactions with Ultracold Atoms in Optical Lattices
- A lattice of double wells for manipulating pairs of cold atoms
- Long Phase Coherence Time and Number Squeezing of two Bose-Einstein Condensates on an Atom Chip
- Preparing and probing atomic number states with an atom interferometer
- Exact solution for infinitely strongly interacting Fermi gases in tight waveguides
- DC Josephson Effect with Fermi gases in the Bose-Einstein regime
- Macroscopic Periodic Tunneling of Fermi Atoms in the BCS-BEC Crossover
- Controlling the Population Imbalance of a Bose-Einstein Condensate by a Symmetry-Breaking Driving Field