Ultrafast olivine-ringwoodite transformation during shock compression

Meteorites from space often include denser polymorphs of their minerals, providing records of past hypervelocity collisions. An olivine mineral crystal was shock-compressed by a high-power laser, and its transformation into denser ringwoodite was time-resolved using an X-ray free electron laser.

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Autores principales: Takuo Okuchi, Yusuke Seto, Naotaka Tomioka, Takeshi Matsuoka, Bruno Albertazzi, Nicholas J. Hartley, Yuichi Inubushi, Kento Katagiri, Ryosuke Kodama, Tatiana A. Pikuz, Narangoo Purevjav, Kohei Miyanishi, Tomoko Sato, Toshimori Sekine, Keiichi Sueda, Kazuo A. Tanaka, Yoshinori Tange, Tadashi Togashi, Yuhei Umeda, Toshinori Yabuuchi, Makina Yabashi, Norimasa Ozaki
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Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/97b9083d54364b7185d581034cb3f381
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spelling oai:doaj.org-article:97b9083d54364b7185d581034cb3f3812021-12-02T18:31:30ZUltrafast olivine-ringwoodite transformation during shock compression10.1038/s41467-021-24633-42041-1723https://doaj.org/article/97b9083d54364b7185d581034cb3f3812021-07-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-24633-4https://doaj.org/toc/2041-1723Meteorites from space often include denser polymorphs of their minerals, providing records of past hypervelocity collisions. An olivine mineral crystal was shock-compressed by a high-power laser, and its transformation into denser ringwoodite was time-resolved using an X-ray free electron laser.Takuo OkuchiYusuke SetoNaotaka TomiokaTakeshi MatsuokaBruno AlbertazziNicholas J. HartleyYuichi InubushiKento KatagiriRyosuke KodamaTatiana A. PikuzNarangoo PurevjavKohei MiyanishiTomoko SatoToshimori SekineKeiichi SuedaKazuo A. TanakaYoshinori TangeTadashi TogashiYuhei UmedaToshinori YabuuchiMakina YabashiNorimasa OzakiNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-8 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Takuo Okuchi
Yusuke Seto
Naotaka Tomioka
Takeshi Matsuoka
Bruno Albertazzi
Nicholas J. Hartley
Yuichi Inubushi
Kento Katagiri
Ryosuke Kodama
Tatiana A. Pikuz
Narangoo Purevjav
Kohei Miyanishi
Tomoko Sato
Toshimori Sekine
Keiichi Sueda
Kazuo A. Tanaka
Yoshinori Tange
Tadashi Togashi
Yuhei Umeda
Toshinori Yabuuchi
Makina Yabashi
Norimasa Ozaki
Ultrafast olivine-ringwoodite transformation during shock compression
description Meteorites from space often include denser polymorphs of their minerals, providing records of past hypervelocity collisions. An olivine mineral crystal was shock-compressed by a high-power laser, and its transformation into denser ringwoodite was time-resolved using an X-ray free electron laser.
format article
author Takuo Okuchi
Yusuke Seto
Naotaka Tomioka
Takeshi Matsuoka
Bruno Albertazzi
Nicholas J. Hartley
Yuichi Inubushi
Kento Katagiri
Ryosuke Kodama
Tatiana A. Pikuz
Narangoo Purevjav
Kohei Miyanishi
Tomoko Sato
Toshimori Sekine
Keiichi Sueda
Kazuo A. Tanaka
Yoshinori Tange
Tadashi Togashi
Yuhei Umeda
Toshinori Yabuuchi
Makina Yabashi
Norimasa Ozaki
author_facet Takuo Okuchi
Yusuke Seto
Naotaka Tomioka
Takeshi Matsuoka
Bruno Albertazzi
Nicholas J. Hartley
Yuichi Inubushi
Kento Katagiri
Ryosuke Kodama
Tatiana A. Pikuz
Narangoo Purevjav
Kohei Miyanishi
Tomoko Sato
Toshimori Sekine
Keiichi Sueda
Kazuo A. Tanaka
Yoshinori Tange
Tadashi Togashi
Yuhei Umeda
Toshinori Yabuuchi
Makina Yabashi
Norimasa Ozaki
author_sort Takuo Okuchi
title Ultrafast olivine-ringwoodite transformation during shock compression
title_short Ultrafast olivine-ringwoodite transformation during shock compression
title_full Ultrafast olivine-ringwoodite transformation during shock compression
title_fullStr Ultrafast olivine-ringwoodite transformation during shock compression
title_full_unstemmed Ultrafast olivine-ringwoodite transformation during shock compression
title_sort ultrafast olivine-ringwoodite transformation during shock compression
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/97b9083d54364b7185d581034cb3f381
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