Coherent States of Multilayer Lithiated Graphene utilizing an Electric Vector Potential

Fuente: arXiv
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Main Author: Boone, Donald C
Format: Preprint
Published: 2023
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_version_ 1866914783251398656
author Boone, Donald C
author_facet Boone, Donald C
contents The computational research that will be presented compares the coherent states of multiple layer graphene versus the coherent states of lithium ions diffused within this multilayer graphene. Unlike the prevailing research on graphene coherent states that uses an external magnetic vector potential, this research will utilize an electric vector potential that is inherent from the electron current density that transverses the π-bonds on the graphene surface. The results from this study will display that the electric vector potential produces energies that can lead to coherent states for graphene and lithiated graphene without the necessity of a strong applied magnetic vector potential. Two excited states will be analyzed for each material. The first excited state (n=1) the graphene coherent state energies lags behind the energies of the lithiated graphene coherent state where as the second excited state (n=2) the coherent state energies of graphene exceeds that of the lithiated graphene coherent state.
format Preprint
id arxiv_https___arxiv_org_abs_2304_00823
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Coherent States of Multilayer Lithiated Graphene utilizing an Electric Vector Potential
Boone, Donald C
Mesoscale and Nanoscale Physics
The computational research that will be presented compares the coherent states of multiple layer graphene versus the coherent states of lithium ions diffused within this multilayer graphene. Unlike the prevailing research on graphene coherent states that uses an external magnetic vector potential, this research will utilize an electric vector potential that is inherent from the electron current density that transverses the π-bonds on the graphene surface. The results from this study will display that the electric vector potential produces energies that can lead to coherent states for graphene and lithiated graphene without the necessity of a strong applied magnetic vector potential. Two excited states will be analyzed for each material. The first excited state (n=1) the graphene coherent state energies lags behind the energies of the lithiated graphene coherent state where as the second excited state (n=2) the coherent state energies of graphene exceeds that of the lithiated graphene coherent state.
title Coherent States of Multilayer Lithiated Graphene utilizing an Electric Vector Potential
topic Mesoscale and Nanoscale Physics
url https://arxiv.org/abs/2304.00823