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自旋为 1/2 的相互作用费米子的超-Tonks-Girardeau 气体。

Super-Tonks-Girardeau gas of spin-1/2 interacting fermions.

机构信息

Institute of Physics, Chinese Academy of Sciences, Beijing, China.

出版信息

Phys Rev Lett. 2010 Oct 22;105(17):175301. doi: 10.1103/PhysRevLett.105.175301. Epub 2010 Oct 19.

Abstract

Fermi gases confined in tight one-dimensional waveguides form two-particle bound states of atoms in the presence of a strongly attractive interaction. Based on the exact solution of the one-dimensional spin-1/2 interacting Fermi gas, we demonstrate that a stable excited state with no pairing between attractive fermionic atoms can be realized by a sudden switch of interaction from the strongly repulsive regime to strongly attractive regime. Such a state is an exact fermionic analog of the experimentally observed super-Tonks-Girardeau state of bosonic Cesium atoms [Science 325, 1224 (2009)] and should be possible to be observed by the experiment. The frequency of the lowest breathing mode of the fermionic super-Tonks-Girardeau gas is calculated as a function of the interaction strength, which could be used as a detectable signature for the experimental observation.

摘要

在强相互作用下,被限制在一维波导中的费米气体形成了原子的双粒子束缚态。基于一维自旋-1/2相互作用费米气体的精确解,我们证明了通过将相互作用从强排斥态突然切换到强吸引态,可以实现没有吸引费米子原子之间配对的稳定激发态。这种状态是实验观测到的玻色铯原子的超 Tonks-Girardeau 态的费米子精确类比[Science 325, 1224 (2009)],并且应该可以通过实验观测到。费米子超 Tonks-Girardeau 气体的最低呼吸模式的频率被计算为相互作用强度的函数,这可以作为实验观测的可检测特征。

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