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石墨烯中的载流子倍增。

Carrier multiplication in graphene.

机构信息

Institut für Theoretische Physik, Technische Universität Berlin, 10623 Berlin, Germany.

出版信息

Nano Lett. 2010 Dec 8;10(12):4839-43. doi: 10.1021/nl1024485. Epub 2010 Nov 5.

Abstract

Graphene as a zero-bandgap semiconductor is an ideal model structure to study the carrier relaxation channels, which are inefficient in conventional semiconductors. In particular, it is of fundamental interest to address the question whether Auger-type processes significantly influence the carrier dynamics in graphene. These scattering channels bridge the valence and conduction band allowing carrier multiplication, a process that generates multiple charge carriers from the absorption of a single photon. This has been suggested in literature for improving the efficiency of solar cells. Here we show, based on microscopic calculations within the density matrix formalism, that Auger processes do play an unusually strong role for the relaxation dynamics of photoexcited charge carriers in graphene. We predict that a considerable carrier multiplication takes place, confirming the potential of graphene as a new material for high-efficiency photodevices.

摘要

石墨烯作为一种零带隙半导体,是研究载流子弛豫通道的理想模型结构,而在传统半导体中,这些通道的效率较低。特别是,解决以下问题具有重要的意义:在石墨烯中,是否阿秒过程对载流子动力学有显著影响。这些散射通道连接价带和导带,允许载流子倍增,这是一个从单个光子的吸收中产生多个电荷载流子的过程。这在文献中被建议用于提高太阳能电池的效率。在这里,我们基于密度矩阵形式的微观计算表明,阿秒过程在石墨烯中光激发载流子的弛豫动力学中确实起着异常强的作用。我们预测会发生相当大的载流子倍增,这证实了石墨烯作为高效光电设备新材料的潜力。

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