Quantum tunneling time of a Bose-Einstein condensate traversing through a laser-induced potential barrier
Quantum Physics
2015-05-19 v1 Quantum Gases
Abstract
We theoretically study the effect of atomic nonlinearity on the tunneling time in the case of an atomic Bose-Einstein condensate (BEC) traversing the laser-induced potential barrier. The atomic nonlinearity is controlled to appear only in the region of the barrier by employing the Feshbach resonance technique to tune interatomic interaction in the tunneling process. Numerical simulation shows that the atomic nonlinear effect dramatically changes the tunneling behavior of the BEC matter wave packet, and results in the violation of Hartman effect and the occurrence of negative tunneling time.
Keywords
Cite
@article{arxiv.1006.0117,
title = {Quantum tunneling time of a Bose-Einstein condensate traversing through a laser-induced potential barrier},
author = {Zhenglu Duan and Bixuan Fan and Chun-Hua Yuan and Jing Cheng and Shiyao Zhu and Weiping Zhang},
journal= {arXiv preprint arXiv:1006.0117},
year = {2015}
}
Comments
4 pages, 5 figures