Artículos de revistas
Vortex lattice in the crossover of a Bose gas from weak coupling to unitarity
Fecha
2018-12-01Registro en:
Scientific Reports, v. 8, n. 1, 2018.
2045-2322
10.1038/s41598-018-27146-1
2-s2.0-85048382357
2-s2.0-85048382357.pdf
Autor
Universidade Estadual Paulista (Unesp)
Università di Padova
Istituto Nazionale di Ottica (INO) Del Consiglio Nazionale Delle Ricerche (CNR)
Institución
Resumen
The formation of a regular lattice of quantized vortices in a fluid under rotation is a smoking-gun signature of its superfluid nature. Here we study the vortex lattice in a dilute superfluid gas of bosonic atoms at zero temperature along the crossover from the weak-coupling regime, where the inter-atomic scattering length is very small compared to the average distance between atoms, to the unitarity regime, where the inter-atomic scattering length diverges. This study is based on high-performance numerical simulations of the time-dependent nonlinear Schrödinger equation for the superfluid order parameter in three spatial dimensions, using a realistic analytical expression for the bulk equation of state of the system along the crossover from weak-coupling to unitarity. This equation of state has the correct weak-coupling and unitarity limits and faithfully reproduces the results of an accurate multi-orbital microscopic calculation. Our numerical predictions of the number of vortices and root-mean-square sizes are important benchmarks for future experiments.