Influence of Rashba spin-orbit and Rabi couplings on the miscibility and ground state phases of binary Bose-Einstein condensates
Rajamanickam Ravisankar, Thangarasu Sriraman, Ramavarmaraja Kishor, Kumar, Paulsamy Muruganandam, and Pankaj Kumar Mishra

TL;DR
This paper investigates how Rashba spin-orbit and Rabi couplings influence the miscibility and ground state phases of binary Bose-Einstein condensates, revealing various phase transitions and spin polarization patterns through numerical simulations.
Contribution
It provides a detailed numerical analysis of ground state phases and phase transitions in SO-coupled BECs considering different interaction regimes and coupling strengths, highlighting new phase behaviors.
Findings
Transition from fully to partially miscible states with increasing Rabi coupling.
Identification of diverse ground state phases including stripe, vortex, and spin polarization patterns.
Critical Rabi coupling decreases as Rashba SO coupling strength increases.
Abstract
We study the miscibility properties and ground state phases of two-component spin-orbit (SO) coupled Bose-Einstein condensates (BECs) in a harmonic trap with strong axial confinement. By numerically solving the coupled Gross-Pitaevskii equations in the two-dimensional setting, we analyze the SO-coupled BECs for two possible permutations of the intra- and interspecies interactions, namely (i) weak intra- and weak interspecies interactions (W-W) and (ii) weak intra- and strong interspecies interactions (W-S). Considering the density overlap integral as a miscibility order parameter, we investigate the miscible-immiscible transition by varying the coupling parameters. We obtain various ground state phases, including plane wave, half quantum vortex, elongated plane wave, and different stripe wave patterns for W-W interactions. For finite Rabi coupling, an increase in SO coupling strength…
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Taxonomy
TopicsCold Atom Physics and Bose-Einstein Condensates · Strong Light-Matter Interactions · Quantum, superfluid, helium dynamics
