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Mode selective excitation of terahertz vibrations in single crystalline rubrene

机译:单晶肾上腺素中的Terahertz振动的模式选择性激发

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摘要

Organic molecular crystals have a variety of low frequency vibrational modes composed of intra- and inter-molecular oscillations. They are mixed intricately in the terahertz (THz) region. We are interested in the controllability of the vibrational energy distribution among such THz vibrational modes based on the femtosecond double-pulse excitation scheme. Single crystalline rubrene is prepared by physical vapor transport. The optical response of vibrational modes in the electric ground state of rubrene is detected by the ultrafast pump-probe reflectivity measurement at 90 K. Three oscillation modes at 3.20, 3.67, and 4.18 THz are detected, and we demonstrate selective enhancement and depletion of each mode by properly tuning the double-pulse delay. The amplitude of the selected vibrational mode is modulated between 0.149 and 1.87, where 1.0 corresponds to the amplitude excited with a single pump pulse. The double-pulse delay dependence of the observed vibrational amplitude is simulated based on the classical driven harmonic oscillator model, and the results reasonably reproduce our experimental signals. Such selective manipulation of the vibrational amplitude can be a potential tool to investigate the vibronic and electron-phonon couplings which plays an important role for the charge transport characteristics and various optoelectronic properties in organic molecular crystals. Published under license by AIP Publishing.
机译:有机分子晶体具有由分子间振荡和分子间振荡组成的各种低频振动模式。它们在太赫兹(THz)地区复杂复杂。基于飞秒双脉冲激励方案,我们对这种THz振动模式之间的振动能量分布的可控性感兴趣。通过物理蒸汽转运制备单晶肾上腺素。通过超速泵探针反射率测量在90 K中检测到橡胶的电研磨状态中的振动模式的光学响应。检测到3.20,3.67和4.18 ZHz的三种振荡模式,我们证明了每个选择性增强和消耗通过正确调整双脉冲延迟来模式。所选择的振动模式的幅度被调制在0.149和1.87之间,其中1.0对应于用单个泵脉冲激励的幅度。基于经典驱动的谐波振荡器模型模拟观察振动幅度的双脉冲延迟依赖性,结果合理地再现了我们的实验信号。这种选择性操纵振动幅度可以是研究振动和电子 - 声子耦合的潜在工具,其在有机分子晶体中起着对电荷传输特性和各种光电性质起着重要作用的重要作用。通过AIP发布在许可证下发布。

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