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1. Verfasser: C. A. Dartora
Format: Artículo científico
Sprache:en
Veröffentlicht: Sociedade Brasileira de Física 2016
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Online-Zugang:https://www.redalyc.org/articulo.oa?id=46443233003
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author C. A. Dartora
author_facet C. A. Dartora
contents Realization of Graphene Physics Through a Fully Optical System C. A. Dartora K. Z. Nobrega Física, Astronomía y Matemáticas Optics Graphene Mode coupling Dirac equation The two-dimensional form of carbon known as graphene awaken the scientific community interest due to its exotic electronic properties, emerging from the behavior of electrons near the Fermi level as massless Dirac fermions in a (1 + 2)-dimensional “relativistic” space-time, which renders a bridge between condensed matter and relativistic quantum field theory. Optical systems are also prodigal in providing analogues of complex quantum mechanical systems. Here, it is proposed an optical realization capable of capturing the essential physics of the Dirac equation in (1+2)-D dimensions, simulating the properties of graphene through the use of lightwave technology. 2016 artículo científico 0103-9733 https://www.redalyc.org/articulo.oa?id=46443233003 en http://www.redalyc.org/revista.oa?id=464 Brazilian Journal of Physics application/pdf Sociedade Brasileira de Física Brazilian Journal of Physics (Brasil) Num.1 Vol.46
format Artículo científico
id redalyc_46443233003
language en
publishDate 2016
publisher Sociedade Brasileira de Física
spellingShingle Realization of Graphene Physics Through a Fully Optical System
C. A. Dartora
Física, Astronomía y Matemáticas
Optics
Graphene
Mode coupling
Dirac equation
Realization of Graphene Physics Through a Fully Optical System C. A. Dartora K. Z. Nobrega Física, Astronomía y Matemáticas Optics Graphene Mode coupling Dirac equation The two-dimensional form of carbon known as graphene awaken the scientific community interest due to its exotic electronic properties, emerging from the behavior of electrons near the Fermi level as massless Dirac fermions in a (1 + 2)-dimensional “relativistic” space-time, which renders a bridge between condensed matter and relativistic quantum field theory. Optical systems are also prodigal in providing analogues of complex quantum mechanical systems. Here, it is proposed an optical realization capable of capturing the essential physics of the Dirac equation in (1+2)-D dimensions, simulating the properties of graphene through the use of lightwave technology. 2016 artículo científico 0103-9733 https://www.redalyc.org/articulo.oa?id=46443233003 en http://www.redalyc.org/revista.oa?id=464 Brazilian Journal of Physics application/pdf Sociedade Brasileira de Física Brazilian Journal of Physics (Brasil) Num.1 Vol.46
title Realization of Graphene Physics Through a Fully Optical System
topic Física, Astronomía y Matemáticas
Optics
Graphene
Mode coupling
Dirac equation
url https://www.redalyc.org/articulo.oa?id=46443233003