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ANOMALOUS IMPURITY SPECTRA IN LOW-TEMPERATURE GLASSES

机译:低温玻璃中的异常杂质光谱

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Spectral holes have been measured for chlorin dopant educt and photoproduct states in five different glasses, o-terphenyl, benzophenone, polystyrene, ethanol, and triethylamine at 5 K. In contrast to the conventional picture of zero-phonon holes and phonon sideholes observable in the educt state, spectral holes in the photoproduct state reveal rather unconventional features. No zero-phonon hole is observable yet the spectra exhibit a peculiarity resonant with the burning frequency (''Lambda-spectra''). The low-temperature vibronic spectra of an impurity in a 1D elastic lattice are calculated and demonstrated to match qualitatively well the Lambda-spectra in the case of weak electron-phonon coupling. The applicability of a ID model is argued to be due to the formation of a local structural defect (planar crack) caused by dopant phototransformation. (C) 1996 American Institute of Physics. [References: 31]
机译:已在5 K下测量了五种不同玻璃(邻-三联苯,二苯甲酮,聚苯乙烯,乙醇和三乙胺)中二氢卟酚掺杂物和光产物状态的光谱孔。与传统的零声子孔和声子侧孔的常规图像相反在离析态时,光产物态中的光谱孔显示出相当不常规的特征。没有观察到零声子空穴,但是光谱表现出与燃烧频率共振的特征(“ Lambda光谱”)。计算了一维弹性晶格中杂质的低温振动电子光谱,并证明了在弱电子-声子耦合的情况下,其定性与Lambda光谱相匹配。 ID模型的适用性被认为是由于掺杂剂光转化引起的局部结构缺陷(平面裂纹)的形成。 (C)1996年美国物理研究所。 [参考:31]

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