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Please use this identifier to cite or link to this item: https://libeldoc.bsuir.by/handle/123456789/45746
Title: Circular photovoltaic effect in an anisotropic graphene superlattice in the presence of a constant electric field
Authors: Badikova, P.
Zav’yalov, D.
Zharikov, D.
Keywords: материалы конференций;conference proceedings;circular photovoltaic effect;anisotropic graphene superlattice
Issue Date: 2021
Publisher: БГУИР
Citation: Badikova, P. Circular photovoltaic effect in an anisotropic graphene superlattice in the presence of a constant electric field / P. Badikova, D. Zav’yalov, D. Zharikov // Nano-Desing, Tehnology, Computer Simulations =Нанопроектирование, технология, компьютерное моделирование (NDTCS-2021) : тезисы докладов XIX Международного симпозиума, Минск, 28-29 октября 2021 года / Белорусский государственный университет информатики и радиоэлектроники ; редкол.: В. А. Богуш [и др.]. – Минск, 2021. – P. 50–52.
Abstract: The unique electrical and optical properties of graphene-based materials and the development of techniques for fabricating low-dimensional structures motivate intensive efforts to implement graphene-based nano- and optoelectronics. However, the pseudo-relativistic behavior of charge carriers was found in the energy bands of not only graphene. There is a certain class of two-dimensional (2D) materials, which includes graphene, silicene, germanene, phosphoric, etc. It is called Dirac materials or graphene-like materials. Currently, the possibility of creating an electronic band structure of graphene by using an additional periodic potential has aroused increased research interest in superlattices (SLs) based on graphene-like materials (GSL). In this paper, the influence of a constant electric field on the circular photovoltaic effect in an anisotropic GSL at normal incidence are investigated. The expression for the current density in such a superlattice is obtained.
URI: https://libeldoc.bsuir.by/handle/123456789/45746
Appears in Collections:NDTCS 2021

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