Collective modes of two-species Bose-Einstein condensates in a Josephson junction barrier
arXiv:2412.19135 · doi:10.1088/1361-6455/ae0a9f
Abstract
The ultracold atoms are an ideal platform to implement atomtronics and Josephson junctions analogous to superconducting circuits. The collective modes of a Bose gas split by a potential barrier have been known. However, the role of barriers on the collective excitation spectra of ultracold atomic mixtures has not been examined. Here, we examine the low-lying collective modes of (an)harmonically trapped quasi-one-dimensional Bose-Einstein condensates in a Josephson barrier by employing the variational approach and Bogoliubov theory. We first show that the anharmonicity of the external potential leads to an increase in the critical barrier strength of mode softening in a single-species condensate. The Josephson barrier drives the softening of in-phase and out-of-phase dipole modes of two-species Bose-Einstein condensates, and consequently leads to two additional zero-energy Goldstone modes in the miscible phase, in agreement with the variational approach. Furthermore, the sandwich immiscible state results in an additional Goldstone mode due to the barrier, in contrast to the spatially symmetry-broken side-by-side profile. Our results unveil the distinct collective response of the Josephson barrier in binary mixtures owing to interspecies atomic correlations.
Accepted version to appear in J. Phys. B
References in corpus (14)
- Periodically driven ergodic and many-body localized quantum systems
- Atomtronic circuits: from many-body physics to quantum technologies
- Controlling phase separation of a two-component Bose-Einstein condensate by confinement
- Collective excitations of a Bose-Einstein condensate in an anharmonic trap
- Josephson plasma oscillations and the Gross-Pitaevskii equation: Bogoliubov approach vs two-mode model
- Catalyzation of supersolidity in binary dipolar condensates
- Fluctuation driven topological transition of binary condensates in optical lattices
- Dispersion relation and excitation character of a two-component Bose-Einstein condensate
- Dynamics of a two-species Bose-Einstein condensate in a double well
- Shapiro steps in driven atomic Josephson junctions
- Self-bound crystals of antiparallel dipolar mixtures
- Observation of Momentum Space Josephson Effects
- Phase separation of a Bose-Bose mixture: impact of the trap and particle number imbalance
- Tunnel-coupled optical microtraps for ultracold atoms