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Manipulation of slow molecular beams by static external fields

机译:静态外部场对慢分子束的操纵

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Deflection by magnetic or electric field gradients has long been used to analyze or to alter the translational trajectories of neutral gas-phase atoms or molecules. Recent work has developed sources of slow, cold molecular beams that offer means to enhance markedly the attainable deflections, which are inversely proportional to the translational kinetic energy. The sensitivity and resolution can thus be much increased, typically by factors of 10(2)-10(4). We illustrate ways to exploit this enhanced deflection capability, particularly when balancing electric and magnetic deflections. Chemical scope can be greatly extended by utilizing feeble but ubiquitous interactions, especially the induced electric dipole due to the molecular polarizability and magnetic moments resulting from molecular rotation or nuclear spins. We also examine the effect of non-Maxwellian velocity distributions produced by supersonic expansions or by quantum statistics (pertinent for ultracold beams). Generic plots are provided, employing dimensionless variables, to facilitate the design and interpretation of experiments with deflections amplified by low kinetic energy. (c) 2006 American Institute of Physics.
机译:长期以来,磁场或电场梯度引起的偏转已被用于分析或改变中性气相原子或分子的平移轨迹。最近的工作已经开发出缓慢而冷的分子束的来源,它们提供了显着增强可达到的偏转的手段,该偏转与平移动能成反比。灵敏度和分辨率因此可以大大提高,通常提高10(2)-10(4)倍。我们说明了利用这种增强的偏转能力的方法,特别是在平衡电和磁偏转时。通过利用微弱但普遍存在的相互作用,尤其是归因于分子极化率和由分子旋转或核自旋产生的磁矩的感应电偶极子,可以极大地扩展化学范围。我们还研究了超音速膨胀或量子统计(与超冷束有关)产生的非麦克斯韦速度分布的影响。提供了使用无量纲变量的通用图,以帮助设计和解释由低动能放大的挠度的实验。 (c)2006年美国物理研究所。

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