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Low chromatic aberration hexapole for molecular state selection

机译:低色差六极杆用于分子态选择

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摘要

In molecular beam state-selection experiments, the electrostatic hexapole acts as an optical lens, imaging molecules from the source to the focus. The molecular longitudinal velocity spread induces the phenomenon of chromatic aberration, which will reduce the state-selection purity. We propose a scheme which can effectively reduce the chromatic aberration by changing the hexapole voltage operating manner. The hexapole is already charged before molecules arrive at the entrance of the hexapole. When molecules are completely inside the hexapole, the voltage is switched off rapidly at an appropriate time. In this manner, faster molecules travel a longer hexapole focusing region than slower molecules. Therefore the focusing positions of molecules with different velocities become close. Numerical trajectory simulations of molecular state selection are carried out, and the results show that this low chromatic aberration hexapole can significantly improve the state purity from 46.2% to 87.0%.
机译:在分子束状态选择实验中,静电六极杆充当光学透镜,从源到焦点成像分子。分子纵向速度扩展引起色差现象,这将降低状态选择纯度。我们提出了一种可以通过改变六极电压工作方式来有效降低色差的方案。在分子到达六极杆的入口之前,六极杆已经带电。当分子完全位于六极内部时,电压会在适当的时间迅速关闭。以此方式,较快的分子比较慢的分子行进更长的六极聚焦区域。因此,具有不同速度的分子的聚焦位置变得接近。进行了分子态选择的数值轨迹模拟,结果表明,这种低色差六极杆可以将态纯度从46.2%显着提高到87.0%。

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