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Moments of single-molecule spectra in low-temperature glasses: Measurements and model calculations

机译:低温玻璃中单分子光谱的矩:测量和模型计算

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Single-molecule spectroscopy of isolated chromophores in solids yields detailed information about the matrix on a microscopic level. In most studies so far, single-molecule (SM) spectra have been characterized by their linewidths. We demonstrate that in a doped amorphous polymer, in which SM excitation spectra generally have a complicated shape, the shapes of SM lines are more fully characterized by their moments than by the usually used linewidth. We present the measured and simulated distributions of the first four moments and of the linewidth for low-temperature spectra of single tetra-tert-butylterrylene molecules embedded in an amorphous poly (isobutylene) matrix. The simulations are based on the standard tunneling model of glasses with appropriate modifications and on a theory of SM line shapes in a disordered host, which was recently derived by Geva and Skinner [J.Phys. Chem. B 101, 8920 (1997)]. The comparative analysis of the measured and simulated distributions allowed us a evaluate the minimal distance of two-level-system-chromphore interactions and the main parameters of the distribution of coupling constants.
机译:固体中分离的发色团的单分子光谱法可在微观水平上获得有关基质的详细信息。到目前为止,在大多数研究中,单分子(SM)光谱已通过其线宽进行了表征。我们证明,在掺杂的无定形聚合物中,SM激发光谱通常具有复杂的形状,与通常使用的线宽相比,SM线的形状更能通过其矩来充分表征。我们介绍了嵌入在无定形聚(异丁烯)基质中的单个四叔丁基亚戊二烯分子的低温光谱的前四个矩和线宽的测量和模拟分布。该模拟基于经过适当修改的标准眼镜隧穿模型,以及无序宿主中SM线形的理论,该理论最近由Geva和Skinner提出[J.Phys。化学B 101,8920(1997)]。对测量分布和模拟分布的比较分析使我们能够评估两级系统-荧光团相互作用的最小距离以及耦合常数分布的主要参数。

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