Photo-induced semimetallic states realised in electron–hole coupled insulators

Ultrafast light pulses can manipulate and probe materials faster than relaxation timescales, leading to new electronic states and insights into equilibrium properties. Okazaki et al. use the properties of photo-induced metallic states to investigate unconventional correlated behaviour in Ta2NiSe5 an...

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Autores principales: Kozo Okazaki, Yu Ogawa, Takeshi Suzuki, Takashi Yamamoto, Takashi Someya, Shoya Michimae, Mari Watanabe, Yangfan Lu, Minoru Nohara, Hidenori Takagi, Naoyuki Katayama, Hiroshi Sawa, Masami Fujisawa, Teruto Kanai, Nobuhisa Ishii, Jiro Itatani, Takashi Mizokawa, Shik Shin
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2018
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Acceso en línea:https://doaj.org/article/f2e9902e1eb8483fa4edf3837980393c
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spelling oai:doaj.org-article:f2e9902e1eb8483fa4edf3837980393c2021-12-02T16:56:54ZPhoto-induced semimetallic states realised in electron–hole coupled insulators10.1038/s41467-018-06801-12041-1723https://doaj.org/article/f2e9902e1eb8483fa4edf3837980393c2018-10-01T00:00:00Zhttps://doi.org/10.1038/s41467-018-06801-1https://doaj.org/toc/2041-1723Ultrafast light pulses can manipulate and probe materials faster than relaxation timescales, leading to new electronic states and insights into equilibrium properties. Okazaki et al. use the properties of photo-induced metallic states to investigate unconventional correlated behaviour in Ta2NiSe5 and Ta2NiS5.Kozo OkazakiYu OgawaTakeshi SuzukiTakashi YamamotoTakashi SomeyaShoya MichimaeMari WatanabeYangfan LuMinoru NoharaHidenori TakagiNaoyuki KatayamaHiroshi SawaMasami FujisawaTeruto KanaiNobuhisa IshiiJiro ItataniTakashi MizokawaShik ShinNature PortfolioarticleScienceQENNature Communications, Vol 9, Iss 1, Pp 1-6 (2018)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Kozo Okazaki
Yu Ogawa
Takeshi Suzuki
Takashi Yamamoto
Takashi Someya
Shoya Michimae
Mari Watanabe
Yangfan Lu
Minoru Nohara
Hidenori Takagi
Naoyuki Katayama
Hiroshi Sawa
Masami Fujisawa
Teruto Kanai
Nobuhisa Ishii
Jiro Itatani
Takashi Mizokawa
Shik Shin
Photo-induced semimetallic states realised in electron–hole coupled insulators
description Ultrafast light pulses can manipulate and probe materials faster than relaxation timescales, leading to new electronic states and insights into equilibrium properties. Okazaki et al. use the properties of photo-induced metallic states to investigate unconventional correlated behaviour in Ta2NiSe5 and Ta2NiS5.
format article
author Kozo Okazaki
Yu Ogawa
Takeshi Suzuki
Takashi Yamamoto
Takashi Someya
Shoya Michimae
Mari Watanabe
Yangfan Lu
Minoru Nohara
Hidenori Takagi
Naoyuki Katayama
Hiroshi Sawa
Masami Fujisawa
Teruto Kanai
Nobuhisa Ishii
Jiro Itatani
Takashi Mizokawa
Shik Shin
author_facet Kozo Okazaki
Yu Ogawa
Takeshi Suzuki
Takashi Yamamoto
Takashi Someya
Shoya Michimae
Mari Watanabe
Yangfan Lu
Minoru Nohara
Hidenori Takagi
Naoyuki Katayama
Hiroshi Sawa
Masami Fujisawa
Teruto Kanai
Nobuhisa Ishii
Jiro Itatani
Takashi Mizokawa
Shik Shin
author_sort Kozo Okazaki
title Photo-induced semimetallic states realised in electron–hole coupled insulators
title_short Photo-induced semimetallic states realised in electron–hole coupled insulators
title_full Photo-induced semimetallic states realised in electron–hole coupled insulators
title_fullStr Photo-induced semimetallic states realised in electron–hole coupled insulators
title_full_unstemmed Photo-induced semimetallic states realised in electron–hole coupled insulators
title_sort photo-induced semimetallic states realised in electron–hole coupled insulators
publisher Nature Portfolio
publishDate 2018
url https://doaj.org/article/f2e9902e1eb8483fa4edf3837980393c
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