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首页> 外文期刊>Physics - Uspekhi >Low-temperature spectroscopy of organic molecules in solid matrices: From the Shpol'skii effect to laser luminescent spectromicroscopy for all effectively emitting single molecules
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Low-temperature spectroscopy of organic molecules in solid matrices: From the Shpol'skii effect to laser luminescent spectromicroscopy for all effectively emitting single molecules

机译:固体基质中有机分子的低温光谱:从Shpol'skii效应到激光发光光谱,所有有效发射的单分子

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摘要

Sixty years ago, in 1952, Prof. E V Shpol'skii and his colleagues were the first to see quasilinear spectra from complex organic compounds in specially selected solvents at low temperatures. Twenty years later, in 1972, a team headed by Prof. RI Personov discovered laser fluorescence line narrowing in the solid solutions of organic dyes. These two discoveries served as the basis for the field of laser selective spectroscopy of impurity centers in solids. The work in this field culminated in the techniques of spectroscopy and luminescence imaging (microscopy) of single molecules in condensed matter. Today, optical spectroscopy of impurity centers in solid solutions has become one of the most popular tools for solving a wide variety of interdisciplinary problems in physics, physical chemistry, optics and spectroscopy, biophysics, quantum optics, and nano-technology. In this article, the development of this field is briefly reviewed, potentials of the developed methods are discussed, and some research results are highlighted.
机译:六十年前的1952年,E V Shpol'skii教授和他的同事们是第一个在低温下从特殊选择的溶剂中观察到复杂有机化合物的准线性光谱的人。二十年后的1972年,以RI Personov教授为首的团队发现了有机染料固溶体中的激光荧光线变窄。这两个发现是固体杂质中心激光选择性光谱学领域的基础。该领域的工作以凝聚态物质中单个分子的光谱学和发光成像(显微镜)技术为高潮。如今,固溶体中杂质中心的光谱学已成为解决物理学,物理化学,光学和光谱学,生物物理学,量子光学和纳米技术中各种学科问题的最受欢迎的工具之一。在本文中,简要回顾了该领域的发展,讨论了所开发方法的潜力,并突出了一些研究成果。

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