English

Probing superfluidity of a mesoscopic Tonks-Girardeau gas

Quantum Gases 2012-03-29 v1

Abstract

We study the dynamical response of a Tonks-Girardeau gas on a ring induced by a moving delta-barrier potential. An exact solution based on the time-dependent Bose-Fermi mapping allows to obtain the particle current, its fluctuations and the drag force acting on the barrier. The exact solution is analyzed numerically as well as analytically in the perturbative regime of weak barrier strength. In the weak barrier limit the stirring drives the system into a state with net zero current for velocities vv smaller than vc=π/mLv_c=\pi\hbar /mL, with mm the atomic mass and LL the ring circumference. At vv approaching vcv_c angular momentum can be transferred to the fluid and a nonzero drag force arises. The existence of a velocity threshold for current generation indicates superfluid-like behavior of the mesoscopic Tonks-Girardeau gas, different from the non-superfluid behavior predicted for Tonks-Girardeau gas in an infinite tube.

Keywords

Cite

@article{arxiv.1203.6292,
  title  = {Probing superfluidity of a mesoscopic Tonks-Girardeau gas},
  author = {C. Schenke and A. Minguzzi and F. W. J. Hekking},
  journal= {arXiv preprint arXiv:1203.6292},
  year   = {2012}
}

Comments

7 pages, 6 figures