Phase space tomography of classical and nonclassical vibrational states of atoms in an optical lattice

J. F. Kanem, S. Maneshi, S. Myrskog, Aephraim M. Steinberg
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引用次数: 11

Abstract

Atoms trapped in an optical lattice have long been a system of interest in the atomic, molecular and optical community, and in recent years much study has been devoted to both short- and long-range coherence in this system, as well as to its possible applications to quantum information processing. Here we demonstrate for the first time a complete determination of the quantum phase space distributions for an ensemble of 85Rb atoms in such a lattice, including a negative Wigner function for atoms in an inverted state.
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光学晶格中原子经典和非经典振动态的相空间层析成像
长期以来,被困在光学晶格中的原子一直是原子、分子和光学学界感兴趣的系统,近年来,人们对该系统中的短期和远程相干性及其在量子信息处理中的可能应用进行了大量研究。在这里,我们首次证明了在这种晶格中85Rb原子系综的量子相空间分布的完整确定,包括原子在倒转状态下的负Wigner函数。
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