单分子的高分辨率光谱学

J. Sepioł, F. Güttler, M. Pirotta, A. Renn, U. Wild
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引用次数: 0

摘要

单粒子光谱学已成为研究光与物质之间基本相互作用的宝贵信息来源。虽然离子和原子的捕获和冷却已经成功实现,但单分子由于其多层结构(高内部自由度)到目前为止还没有在电磁陷阱中观察到。然而,由于零声子线的存在以及非均匀展宽,使得“在极低温度下被困在固体中的”单分子的光谱分离和检测成为可能[1,2]。单分子光谱学可以研究分子性质的分布,而不仅仅是通常观察到的统计平均值。
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High Resolution Spectroscopy on Single Molecules
Single particle spectroscopy has become a source of valuable information on fundamental interactions between light and matter. Whereas trapping and cooling of ions and atoms has been sucessfully achieved, single molecules, because of their multilevel structure (high number of internal degrees of freedom) have not been observed in electromagnetic traps so far. However due to the presence of zero phonon lines in conjunction with inhomogeneous broadening the spectroscopic isolation and detection of single molecules ‘trapped in solids at very low temperatures' is made feasible [1,2]. Single molecule spectroscopy allows to study the distribution of molecular properties and not only the statistical average which is generally observed.
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