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Laser probing of the rotational alignment of N+2drifted in helium

机译:氦气中N+2漂移旋转取向的激光探测

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Results are presented on laser‐induced fluorescence studies of the rotational alignment of N+2drifted in helium. The alignment which is caused by collisions of the ions with the helium buffer gas is observed in the uniform electric field of a drift tube. The angular momentum vectors of the ions are preferentially aligned perpendicular to the electric field vector. At a drift field of 14 Td, corresponding to a collision energy of 52 meV (c.m.), a quadrupole momentA(2)0=−0.11±0.03 is determined for theN=10 rotational state. This yields an approximate population ratio of 2:3 for finding molecules with rotational angular momentum vectors parallel and perpendicular to the electric field vector, respectively. In addition to the alignment studies, a detailed characterization of the drift tube using laser‐induced fluorescence detection of N+2is presented. Theoretical results for the determination of alignment parameters using saturated laser‐induced fluorescence are presented.
机译:结果发表在激光诱导荧光研究的N+2漂移在氦气中的旋转排列中。在漂移管的均匀电场中观察到由离子与氦缓冲气体碰撞引起的排列。离子的角动量矢量优先垂直于电场矢量对齐。在14 Td的漂移场下,对应于52 meV(c.m.)的碰撞能量,确定了N=10旋转状态的四极矩A(2)0=−0.11±0.03。这产生了近似的 2:3 的人口比,用于寻找具有分别平行于和垂直于电场矢量的旋转角动量矢量的分子。除了对准研究外,还介绍了使用激光&连字符诱导荧光检测 N+2 对漂移管的详细表征。给出了使用饱和激光&连字符诱导荧光确定对准参数的理论结果。

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