Tunable and low-loss correlated plasmons in Mott-like insulating oxides

Conventional plasmons in metals often suffer from high plasmonic loss in the optical range. Here, the authors report a distinct form of tunable correlated plasmons in Mott-like insulating Sr1−xNbO3+δfilms, with multiple plasmon frequencies and low loss in the visible-ultraviolet range.

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Autores principales: Teguh Citra Asmara, Dongyang Wan, Yongliang Zhao, Muhammad Aziz Majidi, Christopher T. Nelson, Mary C. Scott, Yao Cai, Bixing Yan, Daniel Schmidt, Ming Yang, Tao Zhu, Paolo E. Trevisanutto, Mallikarjuna R. Motapothula, Yuan Ping Feng, Mark B. H. Breese, Matthew Sherburne, Mark Asta, Andrew Minor, T. Venkatesan, Andrivo Rusydi
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Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/61a9644441a840d4b9c339677968c967
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spelling oai:doaj.org-article:61a9644441a840d4b9c339677968c9672021-12-02T15:38:34ZTunable and low-loss correlated plasmons in Mott-like insulating oxides10.1038/ncomms152712041-1723https://doaj.org/article/61a9644441a840d4b9c339677968c9672017-05-01T00:00:00Zhttps://doi.org/10.1038/ncomms15271https://doaj.org/toc/2041-1723Conventional plasmons in metals often suffer from high plasmonic loss in the optical range. Here, the authors report a distinct form of tunable correlated plasmons in Mott-like insulating Sr1−xNbO3+δfilms, with multiple plasmon frequencies and low loss in the visible-ultraviolet range.Teguh Citra AsmaraDongyang WanYongliang ZhaoMuhammad Aziz MajidiChristopher T. NelsonMary C. ScottYao CaiBixing YanDaniel SchmidtMing YangTao ZhuPaolo E. TrevisanuttoMallikarjuna R. MotapothulaYuan Ping FengMark B. H. BreeseMatthew SherburneMark AstaAndrew MinorT. VenkatesanAndrivo RusydiNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-11 (2017)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Teguh Citra Asmara
Dongyang Wan
Yongliang Zhao
Muhammad Aziz Majidi
Christopher T. Nelson
Mary C. Scott
Yao Cai
Bixing Yan
Daniel Schmidt
Ming Yang
Tao Zhu
Paolo E. Trevisanutto
Mallikarjuna R. Motapothula
Yuan Ping Feng
Mark B. H. Breese
Matthew Sherburne
Mark Asta
Andrew Minor
T. Venkatesan
Andrivo Rusydi
Tunable and low-loss correlated plasmons in Mott-like insulating oxides
description Conventional plasmons in metals often suffer from high plasmonic loss in the optical range. Here, the authors report a distinct form of tunable correlated plasmons in Mott-like insulating Sr1−xNbO3+δfilms, with multiple plasmon frequencies and low loss in the visible-ultraviolet range.
format article
author Teguh Citra Asmara
Dongyang Wan
Yongliang Zhao
Muhammad Aziz Majidi
Christopher T. Nelson
Mary C. Scott
Yao Cai
Bixing Yan
Daniel Schmidt
Ming Yang
Tao Zhu
Paolo E. Trevisanutto
Mallikarjuna R. Motapothula
Yuan Ping Feng
Mark B. H. Breese
Matthew Sherburne
Mark Asta
Andrew Minor
T. Venkatesan
Andrivo Rusydi
author_facet Teguh Citra Asmara
Dongyang Wan
Yongliang Zhao
Muhammad Aziz Majidi
Christopher T. Nelson
Mary C. Scott
Yao Cai
Bixing Yan
Daniel Schmidt
Ming Yang
Tao Zhu
Paolo E. Trevisanutto
Mallikarjuna R. Motapothula
Yuan Ping Feng
Mark B. H. Breese
Matthew Sherburne
Mark Asta
Andrew Minor
T. Venkatesan
Andrivo Rusydi
author_sort Teguh Citra Asmara
title Tunable and low-loss correlated plasmons in Mott-like insulating oxides
title_short Tunable and low-loss correlated plasmons in Mott-like insulating oxides
title_full Tunable and low-loss correlated plasmons in Mott-like insulating oxides
title_fullStr Tunable and low-loss correlated plasmons in Mott-like insulating oxides
title_full_unstemmed Tunable and low-loss correlated plasmons in Mott-like insulating oxides
title_sort tunable and low-loss correlated plasmons in mott-like insulating oxides
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/61a9644441a840d4b9c339677968c967
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