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Optical absorption from solvation-induced polarons on nanotubes

机译:溶剂化诱导的极化子在纳米管上的光吸收

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When an excess charge carrier is added to a one-dimensional (1D) wide-band semiconductor immersed in a polar solvent, the carrier can undergo self-localization into a large-radius adiabatic polaron. We explore the local optical absorption from the ground state of 1D polarons using a simplified theoretical model for small-diameter tubular structures. It is found that about 90% of the absorption strength is contained in the transition to the second lowest-energy localized electronic level formed in the polarization potential well, with the equilibrium transition energy larger than the binding energy of the polaron. Thermal fluctuations, however, can cause a very substantial-an order of magnitude larger than the thermal energy-broadening of the transition. The resulting broad absorption feature may serve as a signature for the optical detection of solvated charge carriers.
机译:当将过量的电荷载流子添加到浸没在极性溶剂中的一维(1D)宽带半导体中时,载流子会经历自定位成大半径的绝热极化子。我们使用一维小直径管状结构的简化理论模型,从一维极化子的基态探索局部光吸收。发现在极化电势阱中形成的向第二最低能量的局部电子能级的跃迁中包含约90%的吸收强度,平衡跃迁能量大于极化子的结合能。但是,热波动会引起非常大的数量级,这比过渡热能的扩展大一个数量级。所得的宽吸收特征可以用作溶剂化载流子的光学检测的特征。

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