Low-dimensional electronic state at the surface of a transparent conductive oxide

Transparent conductive oxides are wide bandgap conductors that combine weak optical absorption. Here, the authors report a two-dimensional electronic state on the surface of La-BaSnO3 and study its properties using a combination of electronic structure measurements and DFT calculations.

Bibliographic Details
Main Authors: Muntaser Naamneh, Eduardo B. Guedes, Abhinav Prakash, Henrique M. Cardoso, Ming Shi, Nicholas C. Plumb, Walber H. Brito, Bharat Jalan, Milan Radović
Format: Article
Language:English
Published: Nature Portfolio 2022-12-01
Series:Communications Physics
Online Access:https://doi.org/10.1038/s42005-022-01091-y
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author Muntaser Naamneh
Eduardo B. Guedes
Abhinav Prakash
Henrique M. Cardoso
Ming Shi
Nicholas C. Plumb
Walber H. Brito
Bharat Jalan
Milan Radović
author_facet Muntaser Naamneh
Eduardo B. Guedes
Abhinav Prakash
Henrique M. Cardoso
Ming Shi
Nicholas C. Plumb
Walber H. Brito
Bharat Jalan
Milan Radović
author_sort Muntaser Naamneh
collection DOAJ
description Transparent conductive oxides are wide bandgap conductors that combine weak optical absorption. Here, the authors report a two-dimensional electronic state on the surface of La-BaSnO3 and study its properties using a combination of electronic structure measurements and DFT calculations.
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spelling doaj.art-7f7636e70b0b4d75ac1a6ccaf85404522022-12-22T04:19:25ZengNature PortfolioCommunications Physics2399-36502022-12-01511610.1038/s42005-022-01091-yLow-dimensional electronic state at the surface of a transparent conductive oxideMuntaser Naamneh0Eduardo B. Guedes1Abhinav Prakash2Henrique M. Cardoso3Ming Shi4Nicholas C. Plumb5Walber H. Brito6Bharat Jalan7Milan Radović8Department of Physics, Ben-Gurion University of the NegevPhoton Science Division, Paul Scherrer InstitutDepartment of Chemical Engineering and Materials Science, University of MinnesotaDepartamento de Física, Universidade Federal de Minas GeraisPhoton Science Division, Paul Scherrer InstitutPhoton Science Division, Paul Scherrer InstitutDepartamento de Física, Universidade Federal de Minas GeraisDepartment of Chemical Engineering and Materials Science, University of MinnesotaPhoton Science Division, Paul Scherrer InstitutTransparent conductive oxides are wide bandgap conductors that combine weak optical absorption. Here, the authors report a two-dimensional electronic state on the surface of La-BaSnO3 and study its properties using a combination of electronic structure measurements and DFT calculations.https://doi.org/10.1038/s42005-022-01091-y
spellingShingle Muntaser Naamneh
Eduardo B. Guedes
Abhinav Prakash
Henrique M. Cardoso
Ming Shi
Nicholas C. Plumb
Walber H. Brito
Bharat Jalan
Milan Radović
Low-dimensional electronic state at the surface of a transparent conductive oxide
Communications Physics
title Low-dimensional electronic state at the surface of a transparent conductive oxide
title_full Low-dimensional electronic state at the surface of a transparent conductive oxide
title_fullStr Low-dimensional electronic state at the surface of a transparent conductive oxide
title_full_unstemmed Low-dimensional electronic state at the surface of a transparent conductive oxide
title_short Low-dimensional electronic state at the surface of a transparent conductive oxide
title_sort low dimensional electronic state at the surface of a transparent conductive oxide
url https://doi.org/10.1038/s42005-022-01091-y
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