Institute of Experimental Physics, Graz University of Technology, Petersgasse 16, A-8010 Graz, Austria.
J Phys Chem A. 2009 Nov 26;113(47):13347-56. doi: 10.1021/jp9041827.
An apparatus is presented to perform magnetic resonance measurements in a beam of doped helium nanodroplets. This type of experiment faces the same difficulties as traditional molecular beam electric/magnetic resonance experiments, namely, an optically thin sample. Like many of these traditional experiments, it uses lasers to prepare the states of interest and to detect them after manipulation with a microwave field. Unlike these traditional experiments, Zeeman substates cannot be resolved by the laser transition because of the droplet-induced line broadening. A magnetic dichroism scheme is used instead, exploiting the favorable selection rules for the absorption of circularly polarized light. ESR spectra are shown for K atoms captured on the surface of He nanodroplets. The extension of the method to other atoms and molecules, and to NMR spectroscopy, is discussed.
一种仪器被提出用于在掺杂氦纳米液滴射束中进行磁共振测量。这种类型的实验面临与传统分子束电动/磁共振实验相同的困难,即光学薄样品。像许多传统实验一样,它使用激光来制备感兴趣的状态,并在微波场操纵后使用激光来检测它们。与这些传统实验不同,由于液滴诱导的线宽,Zeeman 亚态不能通过激光跃迁来分辨。相反,使用磁二色性方案,利用圆偏振光吸收的有利选择规则。展示了 K 原子在 He 纳米液滴表面捕获的 ESR 光谱。讨论了该方法对其他原子和分子以及 NMR 光谱学的扩展。