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首页> 外文期刊>Journal of Physics, B. Atomic, Molecular and Optical Physics: An Institute of Physics Journal >Energy shift and state mixing of Rydberg atoms in ponderomotive optical traps
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Energy shift and state mixing of Rydberg atoms in ponderomotive optical traps

机译:致动光阱中里德堡原子的能量转移和状态混合

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We present a degenerate perturbation analysis in the spin-orbit coupled basis for Rydberg atoms in an optical trap. The perturbation matrix is found to be nearly the same for two states with the same total angular momentum j, and orbital angular momentum number l differing by 1, The same perturbation matrices result in the same state-mixing and energy shift. We also study the dependence of state mixing and energy shift on the periodicity and symmetry of the ponderomotive potentials induced by different optical traps. State mixing in a one-dimensional lattice formed with two counterpropagating Gaussian beams is studied and yields a state-dependent trap depth. We also calculate the state-mixing in an optical trap formed by four parallel, separated and highly focused Gaussian beams.
机译:我们在光学陷阱中的里德堡原子的自旋轨道耦合基础上提出简并的摄动分析。对于具有相同的总角动量j和轨道角动量数l相差1的两个状态,发现摄动矩阵几乎相同。相同的摄动矩阵导致相同的状态混合和能量转移。我们还研究了状态混合和能量转移对不同光阱引起的重势势的周期性和对称性的依赖性。研究了由两个反向传播的高斯光束形成的一维晶格中的状态混合,并得出了与状态有关的陷阱深度。我们还计算了由四个平行,分离且高度聚焦的高斯光束形成的光阱中的状态混合。

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