Kollath Corinna, Sheikhan Ameneh, Wolff Stefan, Brennecke Ferdinand
HISKP, University of Bonn, Nussallee 14-16, 53115 Bonn, Germany.
Physikalisches Institut, University of Bonn, Wegelerstr. 8, 53115 Bonn, Germany.
Phys Rev Lett. 2016 Feb 12;116(6):060401. doi: 10.1103/PhysRevLett.116.060401.
We propose how a fermionic quantum gas confined to an optical lattice and coupled to an optical cavity can self-organize into a state where the spontaneously emerging cavity field amplitude induces an artificial magnetic field. The fermions form either a chiral insulator or a chiral liquid carrying chiral currents. The feedback mechanism via the dynamical cavity field enables robust and fast switching in time of the chiral phases, and the cavity output can be employed for a direct nondestructive measurement of the chiral current.
我们提出,被限制在光学晶格中并与光学腔耦合的费米子量子气体如何能够自组织成一种状态,即自发出现的腔场振幅会诱导出一个人工磁场。费米子形成手性绝缘体或携带手性电流的手性液体。通过动态腔场的反馈机制能够实现手性相在时间上的稳健且快速切换,并且腔输出可用于对手性电流进行直接无损测量。