Numerical simulations of immiscible-to-miscible quenching in 2D binary BECs show instabilities driven by large vortices and phonons, with Kolmogorov scaling at onset, a bottleneck effect, stable vorticity in the miscible regime, and a linear relation between miscibility and initial configuration.
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Immiscible to miscible quenching instabilities in two-dimensional binary Bose-Einstein condensates
Numerical simulations of immiscible-to-miscible quenching in 2D binary BECs show instabilities driven by large vortices and phonons, with Kolmogorov scaling at onset, a bottleneck effect, stable vorticity in the miscible regime, and a linear relation between miscibility and initial configuration.