Pressure-induced Anderson-Mott transition in elemental tellurium

Elemental tellurium is a natural p-type semiconductor with a chiral structure and spin-polarized Fermi surface. Here, the authors show that the pressure-induced topological change of the Fermi surface at 17 kbar triggers an Anderson-Mott insulator-to-metal transition.

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Autores principales: Jaime F. Oliveira, Magda B. Fontes, Marcus Moutinho, Stephen E. Rowley, Elisa Baggio-Saitovitch, Marcello B. Silva Neto, Carsten Enderlein
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Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/3194dc98d2f34743aac7534f96d16170
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spelling oai:doaj.org-article:3194dc98d2f34743aac7534f96d161702021-12-02T11:56:20ZPressure-induced Anderson-Mott transition in elemental tellurium10.1038/s43246-020-00110-12662-4443https://doaj.org/article/3194dc98d2f34743aac7534f96d161702021-01-01T00:00:00Zhttps://doi.org/10.1038/s43246-020-00110-1https://doaj.org/toc/2662-4443Elemental tellurium is a natural p-type semiconductor with a chiral structure and spin-polarized Fermi surface. Here, the authors show that the pressure-induced topological change of the Fermi surface at 17 kbar triggers an Anderson-Mott insulator-to-metal transition.Jaime F. OliveiraMagda B. FontesMarcus MoutinhoStephen E. RowleyElisa Baggio-SaitovitchMarcello B. Silva NetoCarsten EnderleinNature PortfolioarticleMaterials of engineering and construction. Mechanics of materialsTA401-492ENCommunications Materials, Vol 2, Iss 1, Pp 1-10 (2021)
institution DOAJ
collection DOAJ
language EN
topic Materials of engineering and construction. Mechanics of materials
TA401-492
spellingShingle Materials of engineering and construction. Mechanics of materials
TA401-492
Jaime F. Oliveira
Magda B. Fontes
Marcus Moutinho
Stephen E. Rowley
Elisa Baggio-Saitovitch
Marcello B. Silva Neto
Carsten Enderlein
Pressure-induced Anderson-Mott transition in elemental tellurium
description Elemental tellurium is a natural p-type semiconductor with a chiral structure and spin-polarized Fermi surface. Here, the authors show that the pressure-induced topological change of the Fermi surface at 17 kbar triggers an Anderson-Mott insulator-to-metal transition.
format article
author Jaime F. Oliveira
Magda B. Fontes
Marcus Moutinho
Stephen E. Rowley
Elisa Baggio-Saitovitch
Marcello B. Silva Neto
Carsten Enderlein
author_facet Jaime F. Oliveira
Magda B. Fontes
Marcus Moutinho
Stephen E. Rowley
Elisa Baggio-Saitovitch
Marcello B. Silva Neto
Carsten Enderlein
author_sort Jaime F. Oliveira
title Pressure-induced Anderson-Mott transition in elemental tellurium
title_short Pressure-induced Anderson-Mott transition in elemental tellurium
title_full Pressure-induced Anderson-Mott transition in elemental tellurium
title_fullStr Pressure-induced Anderson-Mott transition in elemental tellurium
title_full_unstemmed Pressure-induced Anderson-Mott transition in elemental tellurium
title_sort pressure-induced anderson-mott transition in elemental tellurium
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/3194dc98d2f34743aac7534f96d16170
work_keys_str_mv AT jaimefoliveira pressureinducedandersonmotttransitioninelementaltellurium
AT magdabfontes pressureinducedandersonmotttransitioninelementaltellurium
AT marcusmoutinho pressureinducedandersonmotttransitioninelementaltellurium
AT stephenerowley pressureinducedandersonmotttransitioninelementaltellurium
AT elisabaggiosaitovitch pressureinducedandersonmotttransitioninelementaltellurium
AT marcellobsilvaneto pressureinducedandersonmotttransitioninelementaltellurium
AT carstenenderlein pressureinducedandersonmotttransitioninelementaltellurium
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