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Spin-axis relaxation in spin-exchange collisions of alkali-metal atoms - art. no. 052717

机译:碱金属原子自旋交换碰撞中的自旋轴弛豫-艺术没有。 052717

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摘要

We present calculations of spin-relaxation rates of alkali-metal atoms due to the spin-axis interaction acting in binary collisions between the atoms. We show that for the high-temperature conditions of interest here, the spin-relaxation rates calculated with classical-path trajectories are nearly the same as those calculated with the distorted-wave Born approximation. We compare these calculations to recent experiments that used magnetic decoupling to isolate spin relaxation clue to binary collisions from that due to the formation of triplet van der Waals molecules. The values of the spin-axis coupling coefficients deduced from measurements of binary collision rates are consistent with those deduced from molecular decoupling experiments, and follow a physically plausible scaling law for the spin-axis coupling coefficients. [References: 27]
机译:我们介绍了由于自旋轴相互作用作用于原子之间的二元碰撞而引起的碱金属原子自旋弛豫速率的计算。我们表明,对于此处关注的高温条件,用经典路径轨迹计算出的自旋弛豫率几乎与使用失真波博恩近似计算出的自旋弛豫率几乎相同。我们将这些计算结果与最近的实验进行了比较,该实验使用磁去耦从三重态范德华分子的形成中分离出了自旋弛豫线索到二元碰撞。从二元碰撞率的测量值推导出的自旋轴耦合系数的值与从分子解耦实验中推导的数值一致,并且对于自旋轴耦合系数遵循物理上合理的比例定律。 [参考:27]

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