Superballistic center-of-mass motion in one-dimensional attractive Bose gases : decoherence-induced Gaussian random walks in velocity space.

  • Weiss, C.
  • Cornish, S.L.
  • Gardiner, S.A.
  • Breuer, H.-P.
Open PDF
Publication date
January 2016
Publisher
American Physical Society (APS)
ISSN
2469-9926
Journal
Physical Review A
Language
English

Abstract

We show that the spreading of the center-of-mass density of ultracold attractively interacting bosons can become superballistic in the presence of decoherence, via one-, two-, and/or three-body losses. In the limit of weak decoherence, we analytically solve the numerical model introduced in [Phys. Rev. A 91, 063616 (2015)]. The analytical predictions allow us to identify experimentally accessible parameter regimes for which we predict superballistic spreading of the center-of-mass density. Ultracold attractive Bose gases form weakly bound molecules, quantum matter-wave bright solitons. Our computer simulations combine ideas from classical field methods (“truncated Wigner”) and piecewise deterministic stochastic processes. While the truncate...

Extracted data

We use cookies to provide a better user experience.