XUV Emission from Autoionizing Hole States Induced by Intense XUV-FEL at Intensities up to 10(17) W/cm(2)

Aluminium targets were irradiated with 92 eV radiation from FLASH Free Electron Laser at DESY at intensities up to 1017 W/cm2 by focussing the beam on target down to a spot size of ∼1 μm by means of a parabolic mirror. High resolution XUV spectroscopy was used to identify aluminium emission from com...

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Main Authors: Rosmej, F, Galtier, E, Riley, D, Dzelzainis, T, Heinmann, P, Khattak, F, Lee, R, Nagler, B, Nelson, A, Tschentscher, T, Vinko, S, Whitcher, T, Toleikis, S, Faeustlin, R, Soberierski, R, Juha, L, Fajardo, M, Wark, J, Chalupsky, J, Hajkova, V, Krzywinski, J, Jurek, M, Kozlova, M, IFSA
Format: Conference item
Published: 2010
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author Rosmej, F
Galtier, E
Riley, D
Dzelzainis, T
Heinmann, P
Khattak, F
Lee, R
Nagler, B
Nelson, A
Tschentscher, T
Vinko, S
Whitcher, T
Toleikis, S
Faeustlin, R
Soberierski, R
Juha, L
Fajardo, M
Wark, J
Chalupsky, J
Hajkova, V
Krzywinski, J
Jurek, M
Kozlova, M
IFSA
author_facet Rosmej, F
Galtier, E
Riley, D
Dzelzainis, T
Heinmann, P
Khattak, F
Lee, R
Nagler, B
Nelson, A
Tschentscher, T
Vinko, S
Whitcher, T
Toleikis, S
Faeustlin, R
Soberierski, R
Juha, L
Fajardo, M
Wark, J
Chalupsky, J
Hajkova, V
Krzywinski, J
Jurek, M
Kozlova, M
IFSA
author_sort Rosmej, F
collection OXFORD
description Aluminium targets were irradiated with 92 eV radiation from FLASH Free Electron Laser at DESY at intensities up to 1017 W/cm2 by focussing the beam on target down to a spot size of ∼1 μm by means of a parabolic mirror. High resolution XUV spectroscopy was used to identify aluminium emission from complex hole-states. Simulations carried out with the MARIA code show that the emission characterizes the electron heating in the transition phase solid-atomic. The analysis allows constructing a simple model of electron heating via Auger electrons. © 2010 IOP Publishing Ltd.
first_indexed 2024-03-07T02:15:20Z
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id oxford-uuid:a2086f43-cf86-4c32-968e-2c9432f51847
institution University of Oxford
last_indexed 2024-03-07T02:15:20Z
publishDate 2010
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spelling oxford-uuid:a2086f43-cf86-4c32-968e-2c9432f518472022-03-27T02:17:27ZXUV Emission from Autoionizing Hole States Induced by Intense XUV-FEL at Intensities up to 10(17) W/cm(2)Conference itemhttp://purl.org/coar/resource_type/c_5794uuid:a2086f43-cf86-4c32-968e-2c9432f51847Symplectic Elements at Oxford2010Rosmej, FGaltier, ERiley, DDzelzainis, THeinmann, PKhattak, FLee, RNagler, BNelson, ATschentscher, TVinko, SWhitcher, TToleikis, SFaeustlin, RSoberierski, RJuha, LFajardo, MWark, JChalupsky, JHajkova, VKrzywinski, JJurek, MKozlova, MIFSAAluminium targets were irradiated with 92 eV radiation from FLASH Free Electron Laser at DESY at intensities up to 1017 W/cm2 by focussing the beam on target down to a spot size of ∼1 μm by means of a parabolic mirror. High resolution XUV spectroscopy was used to identify aluminium emission from complex hole-states. Simulations carried out with the MARIA code show that the emission characterizes the electron heating in the transition phase solid-atomic. The analysis allows constructing a simple model of electron heating via Auger electrons. © 2010 IOP Publishing Ltd.
spellingShingle Rosmej, F
Galtier, E
Riley, D
Dzelzainis, T
Heinmann, P
Khattak, F
Lee, R
Nagler, B
Nelson, A
Tschentscher, T
Vinko, S
Whitcher, T
Toleikis, S
Faeustlin, R
Soberierski, R
Juha, L
Fajardo, M
Wark, J
Chalupsky, J
Hajkova, V
Krzywinski, J
Jurek, M
Kozlova, M
IFSA
XUV Emission from Autoionizing Hole States Induced by Intense XUV-FEL at Intensities up to 10(17) W/cm(2)
title XUV Emission from Autoionizing Hole States Induced by Intense XUV-FEL at Intensities up to 10(17) W/cm(2)
title_full XUV Emission from Autoionizing Hole States Induced by Intense XUV-FEL at Intensities up to 10(17) W/cm(2)
title_fullStr XUV Emission from Autoionizing Hole States Induced by Intense XUV-FEL at Intensities up to 10(17) W/cm(2)
title_full_unstemmed XUV Emission from Autoionizing Hole States Induced by Intense XUV-FEL at Intensities up to 10(17) W/cm(2)
title_short XUV Emission from Autoionizing Hole States Induced by Intense XUV-FEL at Intensities up to 10(17) W/cm(2)
title_sort xuv emission from autoionizing hole states induced by intense xuv fel at intensities up to 10 17 w cm 2
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