Femtosecond control of phonon dynamics near a magnetic order critical point

Precise control of vibrational states coupled to electronic degrees of freedom could enable control over charge or magnetic order in a material. Here, the authors use a double-pulse photoexcitation combined with an X-ray probe to control vibrational states near the critical point of spin density wav...

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Autores principales: O. Yu. Gorobtsov, L. Ponet, S. K. K. Patel, N. Hua, A. G. Shabalin, S. Hrkac, J. Wingert, D. Cela, J. M. Glownia, D. Zhu, R. Medapalli, M. Chollet, E. E. Fullerton, S. Artyukhin, O. G. Shpyrko, A. Singer
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Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/f4bf9677ba1f45d385170630846bbaae
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spelling oai:doaj.org-article:f4bf9677ba1f45d385170630846bbaae2021-12-02T16:51:34ZFemtosecond control of phonon dynamics near a magnetic order critical point10.1038/s41467-021-23059-22041-1723https://doaj.org/article/f4bf9677ba1f45d385170630846bbaae2021-05-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-23059-2https://doaj.org/toc/2041-1723Precise control of vibrational states coupled to electronic degrees of freedom could enable control over charge or magnetic order in a material. Here, the authors use a double-pulse photoexcitation combined with an X-ray probe to control vibrational states near the critical point of spin density wave in Cr films.O. Yu. GorobtsovL. PonetS. K. K. PatelN. HuaA. G. ShabalinS. HrkacJ. WingertD. CelaJ. M. GlowniaD. ZhuR. MedapalliM. CholletE. E. FullertonS. ArtyukhinO. G. ShpyrkoA. SingerNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-7 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
O. Yu. Gorobtsov
L. Ponet
S. K. K. Patel
N. Hua
A. G. Shabalin
S. Hrkac
J. Wingert
D. Cela
J. M. Glownia
D. Zhu
R. Medapalli
M. Chollet
E. E. Fullerton
S. Artyukhin
O. G. Shpyrko
A. Singer
Femtosecond control of phonon dynamics near a magnetic order critical point
description Precise control of vibrational states coupled to electronic degrees of freedom could enable control over charge or magnetic order in a material. Here, the authors use a double-pulse photoexcitation combined with an X-ray probe to control vibrational states near the critical point of spin density wave in Cr films.
format article
author O. Yu. Gorobtsov
L. Ponet
S. K. K. Patel
N. Hua
A. G. Shabalin
S. Hrkac
J. Wingert
D. Cela
J. M. Glownia
D. Zhu
R. Medapalli
M. Chollet
E. E. Fullerton
S. Artyukhin
O. G. Shpyrko
A. Singer
author_facet O. Yu. Gorobtsov
L. Ponet
S. K. K. Patel
N. Hua
A. G. Shabalin
S. Hrkac
J. Wingert
D. Cela
J. M. Glownia
D. Zhu
R. Medapalli
M. Chollet
E. E. Fullerton
S. Artyukhin
O. G. Shpyrko
A. Singer
author_sort O. Yu. Gorobtsov
title Femtosecond control of phonon dynamics near a magnetic order critical point
title_short Femtosecond control of phonon dynamics near a magnetic order critical point
title_full Femtosecond control of phonon dynamics near a magnetic order critical point
title_fullStr Femtosecond control of phonon dynamics near a magnetic order critical point
title_full_unstemmed Femtosecond control of phonon dynamics near a magnetic order critical point
title_sort femtosecond control of phonon dynamics near a magnetic order critical point
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/f4bf9677ba1f45d385170630846bbaae
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