首页> 外文期刊>The Journal of Chemical Physics >Deflection and deceleration of hydrogen Rydberg molecules in inhomogeneous electric fields
【24h】

Deflection and deceleration of hydrogen Rydberg molecules in inhomogeneous electric fields

机译:氢里德堡分子在不均匀电场中的偏转和减速

获取原文
获取原文并翻译 | 示例
       

摘要

Hydrogen molecules are excited in a molecular beam to Rydberg states around n = 17- 18 and are exposed to the inhomogeneous electric field of an electric dipole.The large dipole moment produced in the selected Stark eigenstates leads to strong forces on the H_2 molecules in the inhomogeneous electric field.The trajectories of the molecules are monitored using ion-imaging and time of flight measurements.With the dipole rods mounted parallel to the beam direction,the high-field-seeking and low-field-seeking Stark states are deflected towards and away from the dipole,respectively.The magnitude of the deflection is measured as a function of the parabolic quantum number k and of the duration of the applied field.It is also shown that a large deflection is observed when populating the (17d2)_1 state at zero field and switching the dipole field on after a delay.With the dipole mounted perpendicular to the beam direction,the molecules are either accelerated or decelerated as they move towards the dipole.The Rydberg states are found to survive for over 100 mus after the dipole field is switched off before being ionized at the detector and the time of flight is measured.A greater percentage change in kinetic energy is achieved by initial seeding of the beam in helium or neon followed by inhomogeneous field deceleration/acceleration.Molecular dynamics trajectory simulations are presented highlighting the extent to which the trajectories can be predicted based on the known Stark map.The spectroscopy of the populated states is discussed in detail and it is established that the N~+ = 2,J=1,M_J = 0 states populated here have a special stability with respect to decay by predissociation.
机译:氢分子在分子束中被激发到n = 17-18附近的里德堡态,并暴露于电偶极子的不均匀电场中。在选定的斯塔克本征态中产生的大偶极矩导致强力作用于氢的H_2分子上。使用离子成像和飞行时间测量来监测分子的轨迹。在平行于电子束方向安装偶极杆的情况下,高场寻求和低场寻求的斯塔克态向和偏转分别根据抛物线量子数k和所施加场的持续时间来测量偏转的大小。还显示了在填充(17d2)_1状态时观察到大的偏转。在零场处,并在延迟后打开偶极子场。在垂直于光束方向安装偶极子的情况下,分子在向分子方向移动时会加速或减速偶极子场被关闭后,在探测器处被电离并测量飞行时间后,发现里德堡态可以存活100亩以上。通过初始注入光束,可以实现更大的动能百分比变化在氦气或氖气中进行非均匀场减速/加速后,进行了分子动力学轨迹模拟,重点介绍了基于已知的Stark映射可以预测轨迹的程度。在这里,N〜+ = 2,J = 1,M_J = 0的状态对于预分解的衰减具有特殊的稳定性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号