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Differential cross sections for collisions of hexapole state-selected NO with He

机译:六极态选择NO与He碰撞的微分截面

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摘要

The first measurements of differential inelastic collision cross sections of fully state-selected NO (j=12, Ω- =12, ε=-1) with He are presented. Full state selection is achieved by a 2 m long hexapole, which allows for a systematic study of the effect of parity conservation and breaking on the differential cross section. The collisionally excited NO molecules are detected using a resonant (1+ 1′) REMPI ionization scheme in combination with the velocity-mapped, ion-imaging technique. The current experimental configuration minimizes the contribution of noncolliding NO molecules in other rotational states j, Ω-, ε -that contaminates images- and allows for study of the collision process at an unprecedented level of detail. A simple method to correct ion images for collision-induced alignment is presented as well and its performance is demonstrated. The present results show a significant difference between differential cross sections for scattering into the upper and lower component of the Λ -doublet of NO. This result cannot be due to the energy splitting between these components. © 2005 American Institute of Physics.
机译:提出了用He进行完全状态选择的NO(j = 12,Ω-= 12,ε= -1)的差分非弹性碰撞横截面的首次测量。通过2 m长的六极杆可实现全状态选择,从而可以系统地研究奇偶性守恒和断裂对微分截面的影响。结合速度映射离子成像技术,使用共振(1 + 1')REMPI电离方案检测被碰撞激发的NO分子。当前的实验配置使在其他旋转状态j,Ω、、ε中的非碰撞NO分子的影响最小化,这会污染图像,并允许以前所未有的详细程度研究碰撞过程。还提出了一种简单的方法来校正离子图像的碰撞诱导对准,并证明了其性能。目前的结果表明,在不同的横截面之间,用于散射到NO的Λ-双峰的上部和下部组分之间存在显着差异。此结果不能归因于这些组件之间的能量分配。 ©2005美国物理研究所。

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