Ultrafast multi-cycle terahertz measurements of the electrical conductivity in strongly excited solids

The electrical conductivity is critical to understand warm dense matter, but the accurate measurement is extremely challenging. Here the authors use multi-cycle THz pulses to measure the conductivity of gold foils strongly heated by free-electron laser, determining the individual contributions of el...

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Autores principales: Z. Chen, C. B. Curry, R. Zhang, F. Treffert, N. Stojanovic, S. Toleikis, R. Pan, M. Gauthier, E. Zapolnova, L. E. Seipp, A. Weinmann, M. Z. Mo, J. B. Kim, B. B. L. Witte, S. Bajt, S. Usenko, R. Soufli, T. Pardini, S. Hau-Riege, C. Burcklen, J. Schein, R. Redmer, Y. Y. Tsui, B. K. Ofori-Okai, S. H. Glenzer
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Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/1cc4d842661f4f26844a41649fcbb9bb
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spelling oai:doaj.org-article:1cc4d842661f4f26844a41649fcbb9bb2021-12-02T13:15:56ZUltrafast multi-cycle terahertz measurements of the electrical conductivity in strongly excited solids10.1038/s41467-021-21756-62041-1723https://doaj.org/article/1cc4d842661f4f26844a41649fcbb9bb2021-03-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-21756-6https://doaj.org/toc/2041-1723The electrical conductivity is critical to understand warm dense matter, but the accurate measurement is extremely challenging. Here the authors use multi-cycle THz pulses to measure the conductivity of gold foils strongly heated by free-electron laser, determining the individual contributions of electron-electron and electron-ion scattering.Z. ChenC. B. CurryR. ZhangF. TreffertN. StojanovicS. ToleikisR. PanM. GauthierE. ZapolnovaL. E. SeippA. WeinmannM. Z. MoJ. B. KimB. B. L. WitteS. BajtS. UsenkoR. SoufliT. PardiniS. Hau-RiegeC. BurcklenJ. ScheinR. RedmerY. Y. TsuiB. K. Ofori-OkaiS. H. GlenzerNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-8 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Z. Chen
C. B. Curry
R. Zhang
F. Treffert
N. Stojanovic
S. Toleikis
R. Pan
M. Gauthier
E. Zapolnova
L. E. Seipp
A. Weinmann
M. Z. Mo
J. B. Kim
B. B. L. Witte
S. Bajt
S. Usenko
R. Soufli
T. Pardini
S. Hau-Riege
C. Burcklen
J. Schein
R. Redmer
Y. Y. Tsui
B. K. Ofori-Okai
S. H. Glenzer
Ultrafast multi-cycle terahertz measurements of the electrical conductivity in strongly excited solids
description The electrical conductivity is critical to understand warm dense matter, but the accurate measurement is extremely challenging. Here the authors use multi-cycle THz pulses to measure the conductivity of gold foils strongly heated by free-electron laser, determining the individual contributions of electron-electron and electron-ion scattering.
format article
author Z. Chen
C. B. Curry
R. Zhang
F. Treffert
N. Stojanovic
S. Toleikis
R. Pan
M. Gauthier
E. Zapolnova
L. E. Seipp
A. Weinmann
M. Z. Mo
J. B. Kim
B. B. L. Witte
S. Bajt
S. Usenko
R. Soufli
T. Pardini
S. Hau-Riege
C. Burcklen
J. Schein
R. Redmer
Y. Y. Tsui
B. K. Ofori-Okai
S. H. Glenzer
author_facet Z. Chen
C. B. Curry
R. Zhang
F. Treffert
N. Stojanovic
S. Toleikis
R. Pan
M. Gauthier
E. Zapolnova
L. E. Seipp
A. Weinmann
M. Z. Mo
J. B. Kim
B. B. L. Witte
S. Bajt
S. Usenko
R. Soufli
T. Pardini
S. Hau-Riege
C. Burcklen
J. Schein
R. Redmer
Y. Y. Tsui
B. K. Ofori-Okai
S. H. Glenzer
author_sort Z. Chen
title Ultrafast multi-cycle terahertz measurements of the electrical conductivity in strongly excited solids
title_short Ultrafast multi-cycle terahertz measurements of the electrical conductivity in strongly excited solids
title_full Ultrafast multi-cycle terahertz measurements of the electrical conductivity in strongly excited solids
title_fullStr Ultrafast multi-cycle terahertz measurements of the electrical conductivity in strongly excited solids
title_full_unstemmed Ultrafast multi-cycle terahertz measurements of the electrical conductivity in strongly excited solids
title_sort ultrafast multi-cycle terahertz measurements of the electrical conductivity in strongly excited solids
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/1cc4d842661f4f26844a41649fcbb9bb
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