English

Spectral Structure and Many-Body Dynamics of Ultracold Bosons in a Double-Well

Quantum Physics 2020-04-22 v1 Quantum Gases

Abstract

We examine the spectral structure and many-body dynamics of two and three repulsively interacting bosons trapped in a one-dimensional double-well, for variable barrier height, inter-particle interaction strength, and initial conditions. By exact diagonalization of the many-particle Hamiltonian, we specifically explore the dynamical behaviour of the particles launched either at the single particle ground state or saddle point energy, in a time-independent potential. We complement these results by a characterisation of the cross-over from diabatic to quasi-adiabatic evolution under finite-time switching of the potential barrier, via the associated time-evolution of a single particle's von Neumann entropy. This is achieved with the help of the multiconfigurational time-dependent Hartree method for indistinguishable particles (\textsc{Mctdh-x}) -- which also allows us to extrapolate our results for increasing particle numbers.

Keywords

Cite

@article{arxiv.2002.00973,
  title  = {Spectral Structure and Many-Body Dynamics of Ultracold Bosons in a Double-Well},
  author = {Frank Schäfer and Miguel A. Bastarrachea-Magnani and Axel U. J. Lode and Laurent de Forges de Parny and Andreas Buchleitner},
  journal= {arXiv preprint arXiv:2002.00973},
  year   = {2020}
}

Comments

20 pages, 14 figures