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首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Ultrafast photocarrier dynamics in single-layer graphene driven by strong terahertz pulses
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Ultrafast photocarrier dynamics in single-layer graphene driven by strong terahertz pulses

机译:由强大的太赫兹脉冲驱动的单层石墨烯中的超快光载波动力学

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摘要

Time-resolved high-field terahertz (THz) spectroscopy of photoexcited graphene demonstrates extraordinary photocarrier dynamics in single-layer graphene. Strong THz fields and photoexcitation simultaneously enhance the THz transmission of graphene mainly due to the increase of carrier scattering rates. A theoretical analysis confirms that the graphene conductivity undergoes transient decreases to the large extent under the THz and optical excitations, indicating that both the strong THz fields and photoexcitation effectively elevate the carrier scattering rates. The relaxation of photocarriers, on the other hand, shows opposite effects of the THz fields and photoexcitation. Photoexcitation increases the relaxation time via the reabsorption of optical phonons by photocarriers, while strong THz fields reduce the relaxation time because the field-induced redistribution of electrons opens up unoccupied states in the conduction band and consequently enhances the relaxation and the phonon emission. (C) 2018 Optical Society of America
机译:光透明石墨烯的时间分辨高场太赫兹(Thz)光谱显示单层石墨烯中的非凡光载体动力学。强THz字段和光透视同时提高石墨烯的传输主要是由于载波散射率的增加。理论分析证实,石墨烯电导率在大约和光学激发下方的瞬态降低到大约在很大程度上,表明强THz场和运动透明度都有效地提升了载波散射速率。另一方面,光载体的放松显示了THZ领域和光透视的相反效果。光透镜通过光载体通过光学载波的重吸收来增加弛豫时间,而强的THz场降低了弛豫时间,因为野外电子的再分配在导通带中开辟了未占用的状态,因此增强了松弛和声子发射。 (c)2018年光学学会

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