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石墨烯中明亮热等离激元的中红外辐射发射。

Mid-infrared radiative emission from bright hot plasmons in graphene.

作者信息

Kim Laura, Kim Seyoon, Jha Pankaj K, Brar Victor W, Atwater Harry A

机构信息

Thomas J. Watson of Applied Physics, California Institute of Technology, Pasadena, CA, USA.

Department of Physics, University of Wisconsin-Madison, Madison, WI, USA.

出版信息

Nat Mater. 2021 Jun;20(6):805-811. doi: 10.1038/s41563-021-00935-2. Epub 2021 Apr 1.

Abstract

Carrier excitation and decay processes in graphene are of broad interest since relaxation pathways that are not present in conventional materials are enabled by a gapless Dirac electronic band structure. Here, we report that a previously unobserved decay pathway-hot plasmon emission-results in Fermi-level-dependent mid-infrared emission in graphene. Our observations of non-thermal contributions to Fermi-level-dependent radiation are an experimental demonstration of hot plasmon emission arising from a photo-inverted carrier distribution in graphene achieved via ultrafast optical excitation. Our calculations indicate that the reported plasmon emission process can be several orders of magnitude brighter than Planckian emission mechanisms in the mid-infrared spectral range. Both the use of gold nanodisks to promote scattering and localized plasmon excitation and polarization-dependent excitation measurements provide further evidence for bright hot plasmon emission. These findings define an approach for future work on ultrafast and ultrabright graphene emission processes and mid-infrared light source applications.

摘要

由于无间隙狄拉克电子能带结构开启了传统材料中不存在的弛豫途径,石墨烯中的载流子激发和衰减过程备受广泛关注。在此,我们报告一种先前未观察到的衰减途径——热等离子体激元发射——导致石墨烯中出现与费米能级相关的中红外发射。我们对费米能级相关辐射的非热贡献的观察,是通过超快光激发在石墨烯中实现的光反转载流子分布产生热等离子体激元发射的实验证明。我们的计算表明,所报道的等离子体激元发射过程在中红外光谱范围内可比普朗克发射机制亮几个数量级。使用金纳米盘促进散射和局域等离子体激元激发以及偏振相关激发测量,都为明亮的热等离子体激元发射提供了进一步证据。这些发现为未来超快和超亮石墨烯发射过程以及中红外光源应用的研究工作确定了一种方法。

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