石墨烯中的同位素带隙打开

V. Plekhanov
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引用次数: 1

摘要

以石墨烯为基础的纳米电子学的新时代需要创造半导体石墨烯。许多详细阐述半导体石墨烯制造技术的尝试遇到了几个困难:首先,它非常昂贵;其次,它在技术上很难生产。本文介绍了基于原理的新型核半导体石墨烯制备技术。新方法是基于电子激发的强(核)相互作用的能量重整化。该方法提供了一种实验调节石墨烯带隙的方法,比其他打开石墨烯带隙的方法更有效、更可控。该方法不仅打开了石墨烯中的同位素带隙,而且对石墨烯中无质量费米子的重整化也有一定的启示。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Isotopical Band - Gap Opening in Graphene
The new era of nanoelectronics on the graphene basis needs the creation of the semiconducting graphene. Numerous attempts to elaborate the semiconducting graphene creation technology meet several difficulties: firstly it is quite expensive; secondly it is technically difficult to produce. In the present paper the based on principle new nuclear semiconducting graphene creation technology is described. The new method is based on the electronic excitations energy renormalization by the strong (nuclear) interaction. Suggested method provides an alternative way to experimentally tune the band - gap of graphene, which would be more efficient and more controllable than other methods that are used to open band - gap in graphene. This method not only opens the isotopical band - gap in graphene but also may throw light on the massless fermion renormalization in graphene.
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