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Soft-Potential Model and Homogeneous Width of Spectral Lines of Impurity Centers in Molecular Amorphous Media

机译:分子非晶态介质中杂质中心谱线的软势模型和均一宽度

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摘要

A study is made to analyze the possibility of using the soft-potential model in optical investigations of disordered molecular systems with impurities. A procedure is suggested for calculating the temperature dependence of the homogeneous width of a phononless line in amorphous media with impurities within the soft-potential model. A calculation is performed of the temperature dependence of the width of a phononless line (optical dephasing) in an amorphous system of polymethyl methacrylate (PMMA) with an addition of tetratert-butylterrylene (TBT) using the parameters of this system known from the literature. Calculations are performed of the contributions to the width of a phononless line due to the interaction of an impurity with tunneling two-level systems, with thermally activated barrier crossings in double-well potentials, and with quasilocal modes of the matrix. The model calculation results are compared with the experimental data on the photon echo for TBT/PMMA, measured by us in the temperature range from 0.3 to 20 K. It is found that the soft-potential model describes qualitatively correctly the temperature behavior of the homogeneous width of a phononless line. In the temperature range of T < 2 K, where the main contribution to optical dephasing is associated with tunneling two-level systems, the predicted values of phononless line width agree well with the experimental data. At higher temperatures, some difference is observed between the prediction and experimental data, which may be due to the effect of impurity on the formation of quasilocal oscillation of the matrix.
机译:进行了一项研究,以分析将软势模型用于带有杂质的无序分子系统的光学研究的可能性。建议在软势模型中计算具有杂质的非晶态介质中无声子线均匀宽度的温度依赖性的程序。使用文献中已知的该系统的参数,通过在聚甲基丙烯酸甲酯(PMMA)的无定形系统中添加四叔丁基三甲苯(TBT),计算无声子线的宽度(光学相移)的温度依赖性。由于杂质与隧穿两能级系统,双阱势能中的热激活势垒穿越以及矩阵的准局部模式的相互作用,计算了对无声子线宽度的贡献。将模型计算结果与我们在0.3至20 K的温度范围内测得的TBT / PMMA光子回波的实验数据进行了比较。发现软势模型定性地正确描述了均相的温度行为无声子线的宽度。在T <2 K的温度范围内,对光相移的主要贡献与隧穿二级系统有关,无声子线宽的预测值与实验数据吻合良好。在较高的温度下,在预测数据和实验数据之间会观察到一些差异,这可能是由于杂质对基体准局部振荡形成的影响。

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