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单层石墨烯中太赫兹电导率的超快光激发诱导的瞬态下降观察。

Observation of a transient decrease in terahertz conductivity of single-layer graphene induced by ultrafast optical excitation.

机构信息

Department of Physics, Columbia University, New York, New York 10027, USA.

出版信息

Nano Lett. 2013 Feb 13;13(2):524-30. doi: 10.1021/nl303988q. Epub 2013 Jan 31.

Abstract

We have measured the terahertz frequency-dependent sheet conductivity and its transient response following femtosecond optical excitation for single-layer graphene samples grown by chemical vapor deposition. The conductivity of the unexcited graphene sheet, which was spontaneously doped, showed a strong free-carrier response. The THz conductivity matched a Drude model over the available THz spectral range and yielded an average carrier scattering time of 70 fs. Upon photoexcitation, we observed a transient decrease in graphene conductivity. The THz frequency-dependence of the graphene photoresponse differs from that of the unexcited material but remains compatible with a Drude form. We show that the negative photoconductive response arises from an increase in the carrier scattering rate, with a minor offsetting increase in the Drude weight. This behavior, which differs in sign from that reported previously for epitaxial graphene, is expected for samples with relatively high mobilities and doping levels. The photoinduced conductivity transient has a picosecond lifetime and is associated with nonequilibrium excitation conditions in the graphene.

摘要

我们已经测量了单层化学气相沉积法生长的石墨烯样品的太赫兹频率相关薄片电导率及其飞秒光激发后的瞬态响应。自发掺杂的未激发石墨烯薄片的电导率表现出强烈的自由载流子响应。太赫兹电导率在可用的太赫兹光谱范围内与德拜模型匹配,得出平均载流子散射时间为 70 fs。在光激发下,我们观察到石墨烯电导率的瞬态下降。石墨烯光响应的太赫兹频率依赖性与未激发材料不同,但仍与德拜形式兼容。我们表明,负光电导响应源于载流子散射率的增加,而德拜权重略有增加。这种行为与先前报道的外延石墨烯的行为相反,预计在相对较高的迁移率和掺杂水平的样品中会出现这种行为。光致导电性瞬变具有皮秒寿命,与石墨烯中的非平衡激发条件有关。

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