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均匀光致矢量势中的玻色-爱因斯坦凝聚体。

Bose-Einstein condensate in a uniform light-induced vector potential.

作者信息

Lin Y-J, Compton R L, Perry A R, Phillips W D, Porto J V, Spielman I B

机构信息

Joint Quantum Institute, National Institute of Standards and Technology, and University of Maryland, Gaithersburg, Maryland, 20899, USA.

出版信息

Phys Rev Lett. 2009 Apr 3;102(13):130401. doi: 10.1103/PhysRevLett.102.130401. Epub 2009 Mar 30.

Abstract

We use a two-photon dressing field to create an effective vector gauge potential for Bose-Einstein-condensed 87Rb atoms in the F=1 hyperfine ground state. These Raman-dressed states are spin and momentum superpositions, and we adiabatically load the atoms into the lowest energy dressed state. The effective Hamiltonian of these neutral atoms is like that of charged particles in a uniform magnetic vector potential whose magnitude is set by the strength and detuning of the Raman coupling. The spin and momentum decomposition of the dressed states reveals the strength of the effective vector potential, and our measurements agree quantitatively with a simple single-particle model. While the uniform effective vector potential described here corresponds to zero magnetic field, our technique can be extended to nonuniform vector potentials, giving nonzero effective magnetic fields.

摘要

我们使用双光子修饰场为处于F = 1超精细基态的玻色-爱因斯坦凝聚的87Rb原子创建一个有效的矢量规范势。这些拉曼修饰态是自旋和动量的叠加态,我们将原子绝热加载到最低能量的修饰态。这些中性原子的有效哈密顿量类似于处于均匀磁矢量势中的带电粒子的哈密顿量,其大小由拉曼耦合的强度和失谐量设定。修饰态的自旋和动量分解揭示了有效矢量势的强度,我们的测量结果与一个简单的单粒子模型在定量上相符。虽然这里描述的均匀有效矢量势对应于零磁场,但我们的技术可以扩展到非均匀矢量势,从而产生非零的有效磁场。

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