Electric Field Effects on Curved Graphene Quantum Dots

Author:

de-la-Huerta-Sainz Sergio1ORCID,Ballesteros Angel1ORCID,Cordero Nicolás A.123ORCID

Affiliation:

1. Physics Department, Universidad de Burgos, 09001 Burgos, Spain

2. International Research Center in Critical Raw Materials for Advanced Industrial Technologies (ICCRAM), Unversidad de Burgos, 09001 Burgos, Spain

3. Institute Carlos I for Theoretical and Computational Physics (IC1), 18016 Granada, Spain

Abstract

The recent and continuous research on graphene-based systems has opened their usage to a wide range of applications due to their exotic properties. In this paper, we have studied the effects of an electric field on curved graphene nanoflakes, employing the Density Functional Theory. Both mechanical and electronic analyses of the system have been made through its curvature energy, dipolar moment, and quantum regeneration times, with the intensity and direction of a perpendicular electric field and flake curvature as parameters. A stabilisation of non-planar geometries has been observed, as well as opposite behaviours for both classical and revival times with respect to the direction of the external field. Our results show that it is possible to modify regeneration times using curvature and electric fields at the same time. This fine control in regeneration times could allow for the study of new phenomena on graphene.

Funder

Regional Government of Castilla y León

European Union NextGenerationEU

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Mechanical Engineering,Control and Systems Engineering

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