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二维硅的光学电导率:狄拉克电动力学的证据。

Optical Conductivity of Two-Dimensional Silicon: Evidence of Dirac Electrodynamics.

机构信息

CNR-IMM Unit of Agrate Brianza , via C. Olivetti 2 , Agrate Brianza , I-20864 , Italy.

CNR-IOM Dipartimento di Fisica, Università di Roma La Sapienza , p.le Aldo Moro 2 , Roma , I-00185 , Italy.

出版信息

Nano Lett. 2018 Nov 14;18(11):7124-7132. doi: 10.1021/acs.nanolett.8b03169. Epub 2018 Nov 5.

Abstract

The exotic electrodynamics properties of graphene come from the linearly dispersive electronic bands that host massless Dirac electrons. A similar behavior was predicted to manifest in freestanding silicene, the silicon counterpart of graphene, thereby envisaging a new route for silicon photonics. However, the access to silicene exploitation in photonics was hindered so far by the use of optically inappropriate substrates in experimentally realized silicene. Here we report on the optical conductivity of silicon nanosheets epitaxially grown on optically transparent AlO(0001) from a thickness of a few tens of nanometers down to the extreme two-dimensional (2D) limit. When a 2D regime is approached, a Dirac-like electrodynamics can be deduced from the observation of a low-energy optical conductivity feature owing to a silicene-based interfacing to the substrate.

摘要

石墨烯的奇特电动力学性质来自于具有无质量狄拉克电子的线性色散能带。类似的行为被预测将在独立的硅烯中表现出来,硅烯是石墨烯的硅对应物,从而为硅光子学开辟了一条新途径。然而,由于在实验中实现的硅烯中使用了不适合光学的衬底,硅烯在光子学中的应用一直受到阻碍。在这里,我们报告了在光学透明的 AlO(0001)上外延生长的硅纳米片的光学电导率,其厚度从几十纳米到极端二维(2D)极限。当接近 2D 时,可以通过观察由于基于硅烯的与衬底的界面而产生的低能光学电导率特征来推断出类似狄拉克的电动力学。

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