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高斯势有助于旋转玻色气体进入量子霍尔态。

Gaussian potentials facilitate access to quantum Hall states in rotating Bose gases.

作者信息

Morris Alexis G, Feder David L

机构信息

Department of Physics and Astronomy and Institute for Quantum Information Science, University of Calgary, Calgary, Alberta, Canada T2N 1N4.

出版信息

Phys Rev Lett. 2007 Dec 14;99(24):240401. doi: 10.1103/PhysRevLett.99.240401. Epub 2007 Dec 12.

Abstract

Through exact numerical diagonalization for small numbers of atoms, we show that it is possible to access quantum Hall states in harmonically confined Bose gases at rotation frequencies well below the centrifugal limit by applying a repulsive Gaussian potential at the trap center. The main idea is to reduce or eliminate the effective trapping frequency in regions where the particle density is appreciable. The critical rotation frequency required to obtain the bosonic Laughlin state can be fixed at an experimentally accessible value by choosing an applied Gaussian whose amplitude increases linearly with the number of atoms while its width increases as the square root.

摘要

通过对少量原子进行精确的数值对角化,我们表明,通过在陷阱中心施加排斥性高斯势,在远低于离心极限的旋转频率下,有可能在谐波限制的玻色气体中实现量子霍尔态。主要思想是在粒子密度可观的区域降低或消除有效捕获频率。通过选择一个施加的高斯函数,其振幅随原子数线性增加,而宽度随平方根增加,获得玻色劳克林态所需的临界旋转频率可以固定在一个实验可及的值。

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