Klein tunneling of optically tunable Dirac particles with elliptical dispersions

We have investigated electron tunneling through an atomically smooth square potential barrier for both the dice lattice and graphene under a linearly polarized off-resonant and high-frequency dressing field. We have demonstrated Klein tunneling for a nonzero angle of incidence which is due to a nona...

Full description

Bibliographic Details
Main Authors: Andrii Iurov, Liubov Zhemchuzhna, Paula Fekete, Godfrey Gumbs, Danhong Huang
Format: Article
Language:English
Published: American Physical Society 2020-11-01
Series:Physical Review Research
Online Access:http://doi.org/10.1103/PhysRevResearch.2.043245
_version_ 1797211182854045696
author Andrii Iurov
Liubov Zhemchuzhna
Paula Fekete
Godfrey Gumbs
Danhong Huang
author_facet Andrii Iurov
Liubov Zhemchuzhna
Paula Fekete
Godfrey Gumbs
Danhong Huang
author_sort Andrii Iurov
collection DOAJ
description We have investigated electron tunneling through an atomically smooth square potential barrier for both the dice lattice and graphene under a linearly polarized off-resonant and high-frequency dressing field. We have demonstrated Klein tunneling for a nonzero angle of incidence which is due to a nonalignment of optically controllable elliptical energy dispersions for the dressed states of Dirac particles and the direction of incoming kinetic particles. This finite angle of incidence has been found to depend on the light-induced anisotropy of energy dispersion, which is a function of the electron-light coupling strength, as well as the misalignment between directions of the light polarization and the electron beam incident on the potential barrier. Additionally, we have discovered much larger off-peak transmission amplitudes for dice lattices in contrast to graphene. We anticipate that the theoretical predictions could be applied to a wide range of Dirac materials and exploited for controlling both coherent tunneling and ballistic transport of electrons in the construction of novel electronic, optical, and valleytronic nanoscale switching devices.
first_indexed 2024-04-24T10:22:26Z
format Article
id doaj.art-1496509dc3884a39b4b043dc4d16a50d
institution Directory Open Access Journal
issn 2643-1564
language English
last_indexed 2024-04-24T10:22:26Z
publishDate 2020-11-01
publisher American Physical Society
record_format Article
series Physical Review Research
spelling doaj.art-1496509dc3884a39b4b043dc4d16a50d2024-04-12T17:04:00ZengAmerican Physical SocietyPhysical Review Research2643-15642020-11-012404324510.1103/PhysRevResearch.2.043245Klein tunneling of optically tunable Dirac particles with elliptical dispersionsAndrii IurovLiubov ZhemchuzhnaPaula FeketeGodfrey GumbsDanhong HuangWe have investigated electron tunneling through an atomically smooth square potential barrier for both the dice lattice and graphene under a linearly polarized off-resonant and high-frequency dressing field. We have demonstrated Klein tunneling for a nonzero angle of incidence which is due to a nonalignment of optically controllable elliptical energy dispersions for the dressed states of Dirac particles and the direction of incoming kinetic particles. This finite angle of incidence has been found to depend on the light-induced anisotropy of energy dispersion, which is a function of the electron-light coupling strength, as well as the misalignment between directions of the light polarization and the electron beam incident on the potential barrier. Additionally, we have discovered much larger off-peak transmission amplitudes for dice lattices in contrast to graphene. We anticipate that the theoretical predictions could be applied to a wide range of Dirac materials and exploited for controlling both coherent tunneling and ballistic transport of electrons in the construction of novel electronic, optical, and valleytronic nanoscale switching devices.http://doi.org/10.1103/PhysRevResearch.2.043245
spellingShingle Andrii Iurov
Liubov Zhemchuzhna
Paula Fekete
Godfrey Gumbs
Danhong Huang
Klein tunneling of optically tunable Dirac particles with elliptical dispersions
Physical Review Research
title Klein tunneling of optically tunable Dirac particles with elliptical dispersions
title_full Klein tunneling of optically tunable Dirac particles with elliptical dispersions
title_fullStr Klein tunneling of optically tunable Dirac particles with elliptical dispersions
title_full_unstemmed Klein tunneling of optically tunable Dirac particles with elliptical dispersions
title_short Klein tunneling of optically tunable Dirac particles with elliptical dispersions
title_sort klein tunneling of optically tunable dirac particles with elliptical dispersions
url http://doi.org/10.1103/PhysRevResearch.2.043245
work_keys_str_mv AT andriiiurov kleintunnelingofopticallytunablediracparticleswithellipticaldispersions
AT liubovzhemchuzhna kleintunnelingofopticallytunablediracparticleswithellipticaldispersions
AT paulafekete kleintunnelingofopticallytunablediracparticleswithellipticaldispersions
AT godfreygumbs kleintunnelingofopticallytunablediracparticleswithellipticaldispersions
AT danhonghuang kleintunnelingofopticallytunablediracparticleswithellipticaldispersions