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Experimental determination of spin-rotation and spin-spin magnetic interactions in ~(13)CH_3F by nuclear spin conversion

机译:核自旋转换实验确定〜(13)CH_3F中自旋-自旋和自旋-自旋磁相互作用

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摘要

When a gas sample of ~(13)CH_3F is prepared with a population of isomers (ortho and para forms) far from the equilibrium given by nuclear spin statistics, it relaxes towards this equilibrium with an exponential decay rate. This phenomenon called nuclear spin conversion is mainly governed by intramolecular spin-spin and spin-rotation interactions. In the quantum relaxation model [P.L. Chapovsky, Phys. Rev. A 43, 3624 (1991)], two pairs of ortho-para levels (J = 9, K = 3; J' = 11, K' = 1) and (J = 20, K = 3; J' = 21, K' = 1) are principally responsible for the conversion. The levels of the second pair are coupled by both spin-spin and spin-rotation interactions. The application of an electric field (up to 10 kV/cm) induces a crossing of the Stark components of this pair, which is observed for the first time. A specific experimental set-up based on an electric field of alternating triangular shape is used, which allows the determination of the strength of both interactions via the measurement of the spin conversion decay rates. This work yields the first experimental value for the electronic contribution to the spin-rotation interaction in ~(13)CH_3F.
机译:当制备〜(13)CH_3F的气体样品时,其异构体(邻位和对位形式)的数量远离核自旋统计给出的平衡,它将以指数衰减率朝该平衡松弛。这种称为核自旋转化的现象主要由分子内自旋-自旋和自旋-旋转相互作用控制。在量子弛豫模型中Chapovsky,物理学。 Rev. A 43,3624(1991)],两对邻位水平(J = 9,K = 3; J'= 11,K'= 1)和(J = 20,K = 3; J'= 21,K'= 1)主要负责转换。第二对的水平通过自旋-自旋和自旋-旋转相互作用耦合。电场(最高10 kV / cm)的施加会引起该对Stark组分的交叉,这是首次观察到。使用了基于交替三角形电场的特定实验装置,该装置可以通过测量自旋转换衰减率来确定两种相互作用的强度。这项工作为电子贡献〜(13)CH_3F中的自旋-旋转相互作用产生了第一个实验值。

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