Persistence of magnetic order in a highly excited Cu2+ state in CuO

We use ultrafast resonant x-ray diffraction to study the magnetic order in CuO under conditions of high electronic excitation. By measuring changes in the spectral shape of the Cu2+ magnetic (1/2 0 â1/2) reflection we investigate how an intense optical pump pulse perturbs the electronic and magnetic...

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Autores principales: Staub, U, de Souza, R, Beaud, P, Moehr-Vorobeva, E, Ingold, G, Caviezel, A, Scagnoli, V, Delley, B, Turner, J, Krupin, O, Lee, W, Chuang, Y, Patthey, L, Moore, R, Lu, D, Yi, M, Kirchmann, P, Trigo, M, Denes, P, Doering, D, Hussain, Z, Shen, Z, Prabhakaran, D, Boothroyd, A, Johnson, S
Formato: Journal article
Lenguaje:English
Publicado: American Physical Society 2014
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author Staub, U
de Souza, R
Beaud, P
Moehr-Vorobeva, E
Ingold, G
Caviezel, A
Scagnoli, V
Delley, B
Turner, J
Krupin, O
Lee, W
Chuang, Y
Patthey, L
Moore, R
Lu, D
Yi, M
Kirchmann, P
Trigo, M
Denes, P
Doering, D
Hussain, Z
Shen, Z
Prabhakaran, D
Boothroyd, A
Johnson, S
author_facet Staub, U
de Souza, R
Beaud, P
Moehr-Vorobeva, E
Ingold, G
Caviezel, A
Scagnoli, V
Delley, B
Turner, J
Krupin, O
Lee, W
Chuang, Y
Patthey, L
Moore, R
Lu, D
Yi, M
Kirchmann, P
Trigo, M
Denes, P
Doering, D
Hussain, Z
Shen, Z
Prabhakaran, D
Boothroyd, A
Johnson, S
author_sort Staub, U
collection OXFORD
description We use ultrafast resonant x-ray diffraction to study the magnetic order in CuO under conditions of high electronic excitation. By measuring changes in the spectral shape of the Cu2+ magnetic (1/2 0 â1/2) reflection we investigate how an intense optical pump pulse perturbs the electronic and magnetic states. We observe an energy shift in the magnetic resonance at short times after the pump pulse. This shift is compared with expectations from band structure calculations at different electronic temperatures. This spectral line shift indicates that although the electrons are heated to effective electron temperatures far above TN on a time scale faster than the experimental resolution, magnetic order persists in this highly excited state for several hundred femtoseconds. © 2014 American Physical Society.
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spelling oxford-uuid:002449b1-1913-4197-8fc8-dfb965b0f18f2022-03-26T08:28:06ZPersistence of magnetic order in a highly excited Cu2+ state in CuOJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:002449b1-1913-4197-8fc8-dfb965b0f18fEnglishSymplectic Elements at OxfordAmerican Physical Society2014Staub, Ude Souza, RBeaud, PMoehr-Vorobeva, EIngold, GCaviezel, AScagnoli, VDelley, BTurner, JKrupin, OLee, WChuang, YPatthey, LMoore, RLu, DYi, MKirchmann, PTrigo, MDenes, PDoering, DHussain, ZShen, ZPrabhakaran, DBoothroyd, AJohnson, SWe use ultrafast resonant x-ray diffraction to study the magnetic order in CuO under conditions of high electronic excitation. By measuring changes in the spectral shape of the Cu2+ magnetic (1/2 0 â1/2) reflection we investigate how an intense optical pump pulse perturbs the electronic and magnetic states. We observe an energy shift in the magnetic resonance at short times after the pump pulse. This shift is compared with expectations from band structure calculations at different electronic temperatures. This spectral line shift indicates that although the electrons are heated to effective electron temperatures far above TN on a time scale faster than the experimental resolution, magnetic order persists in this highly excited state for several hundred femtoseconds. © 2014 American Physical Society.
spellingShingle Staub, U
de Souza, R
Beaud, P
Moehr-Vorobeva, E
Ingold, G
Caviezel, A
Scagnoli, V
Delley, B
Turner, J
Krupin, O
Lee, W
Chuang, Y
Patthey, L
Moore, R
Lu, D
Yi, M
Kirchmann, P
Trigo, M
Denes, P
Doering, D
Hussain, Z
Shen, Z
Prabhakaran, D
Boothroyd, A
Johnson, S
Persistence of magnetic order in a highly excited Cu2+ state in CuO
title Persistence of magnetic order in a highly excited Cu2+ state in CuO
title_full Persistence of magnetic order in a highly excited Cu2+ state in CuO
title_fullStr Persistence of magnetic order in a highly excited Cu2+ state in CuO
title_full_unstemmed Persistence of magnetic order in a highly excited Cu2+ state in CuO
title_short Persistence of magnetic order in a highly excited Cu2+ state in CuO
title_sort persistence of magnetic order in a highly excited cu2 state in cuo
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