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The High Energy Density Scientific Instrument at the European XFEL

Authors :
Zastrau, U
Appel, K
Baehtz, C
Baehr, O
Batchelor, L
Berghäuser, A
Banjafar, M
Brambrink, E
Cerantola, V
Cowan, T
Damker, H
Dietrich, S
Di Dio Cafiso, S
Dreyer, J
Engel, H
Feldmann, T
Findeisen, S
Foese, M
Fulla-Marsa, D
Göde, S
Hassan, M
Hauser, J
Herrmannsdörfer, T
Höppner, H
Kaa, J
Kaever, P
Knöfel, K
Konôpková, Z
Laso García, A
Liermann, H
Mainberger, J
Makita, M
Martens, E
Mcbride, E
Möller, D
Nakatsutsumi, M
Pelka, A
Plueckthun, C
Prescher, C
Preston, T
Röper, M
Schmidt, A
Seidel, W
Schwinkendorf, J
Schoelmerich, M
Schramm, U
Schropp, A
Strohm, C
Sukharnikov, K
Talkovski, P
Thorpe, I
Toncian, M
Toncian, T
Wollenweber, L
Yamamoto, S
Tschentscher, T
Zastrau, Ulf
Appel, Karen
Baehtz, Carsten
Baehr, Oliver
Batchelor, Lewis
Berghäuser, Andreas
Banjafar, Mohammadreza
Brambrink, Erik
Cerantola, Valerio
Cowan, Thomas E
Damker, Horst
Dietrich, Steffen
Di Dio Cafiso, Samuele
Dreyer, Jörn
Engel, Hans Olaf
Feldmann, Thomas
Findeisen, Stefan
Foese, Manon
Fulla-Marsa, Daniel
Göde, Sebastian
Hassan, Mohammed
Hauser, Jens
Herrmannsdörfer, Thomas
Höppner, Hauke
Kaa, Johannes
Kaever, Peter
Knöfel, Klaus
Konôpková, Zuzana
Laso García, Alejandro
Liermann, Hanns Peter
Mainberger, Jona
Makita, Mikako
Martens, Eike Christian
McBride, Emma E
Möller, Dominik
Nakatsutsumi, Motoaki
Pelka, Alexander
Plueckthun, Christian
Prescher, Clemens
Preston, Thomas R
Röper, Michael
Schmidt, Andreas
Seidel, Wolfgang
Schwinkendorf, Jan Patrick
Schoelmerich, Markus O
Schramm, Ulrich
Schropp, Andreas
Strohm, Cornelius
Sukharnikov, Konstantin
Talkovski, Peter
Thorpe, Ian
Toncian, Monika
Toncian, Toma
Wollenweber, Lennart
Yamamoto, Shingo
Tschentscher, Thomas
Zastrau, U
Appel, K
Baehtz, C
Baehr, O
Batchelor, L
Berghäuser, A
Banjafar, M
Brambrink, E
Cerantola, V
Cowan, T
Damker, H
Dietrich, S
Di Dio Cafiso, S
Dreyer, J
Engel, H
Feldmann, T
Findeisen, S
Foese, M
Fulla-Marsa, D
Göde, S
Hassan, M
Hauser, J
Herrmannsdörfer, T
Höppner, H
Kaa, J
Kaever, P
Knöfel, K
Konôpková, Z
Laso García, A
Liermann, H
Mainberger, J
Makita, M
Martens, E
Mcbride, E
Möller, D
Nakatsutsumi, M
Pelka, A
Plueckthun, C
Prescher, C
Preston, T
Röper, M
Schmidt, A
Seidel, W
Schwinkendorf, J
Schoelmerich, M
Schramm, U
Schropp, A
Strohm, C
Sukharnikov, K
Talkovski, P
Thorpe, I
Toncian, M
Toncian, T
Wollenweber, L
Yamamoto, S
Tschentscher, T
Zastrau, Ulf
Appel, Karen
Baehtz, Carsten
Baehr, Oliver
Batchelor, Lewis
Berghäuser, Andreas
Banjafar, Mohammadreza
Brambrink, Erik
Cerantola, Valerio
Cowan, Thomas E
Damker, Horst
Dietrich, Steffen
Di Dio Cafiso, Samuele
Dreyer, Jörn
Engel, Hans Olaf
Feldmann, Thomas
Findeisen, Stefan
Foese, Manon
Fulla-Marsa, Daniel
Göde, Sebastian
Hassan, Mohammed
Hauser, Jens
Herrmannsdörfer, Thomas
Höppner, Hauke
Kaa, Johannes
Kaever, Peter
Knöfel, Klaus
Konôpková, Zuzana
Laso García, Alejandro
Liermann, Hanns Peter
Mainberger, Jona
Makita, Mikako
Martens, Eike Christian
McBride, Emma E
Möller, Dominik
Nakatsutsumi, Motoaki
Pelka, Alexander
Plueckthun, Christian
Prescher, Clemens
Preston, Thomas R
Röper, Michael
Schmidt, Andreas
Seidel, Wolfgang
Schwinkendorf, Jan Patrick
Schoelmerich, Markus O
Schramm, Ulrich
Schropp, Andreas
Strohm, Cornelius
Sukharnikov, Konstantin
Talkovski, Peter
Thorpe, Ian
Toncian, Monika
Toncian, Toma
Wollenweber, Lennart
Yamamoto, Shingo
Tschentscher, Thomas
Publication Year :
2021

Abstract

The European XFEL delivers up to 27000 intense (>1012photons) pulses per second, of ultrashort (≤50 fs) and transversely coherent X-ray radiation, at a maximum repetition rate of 4.5MHz. Its unique X-ray beam parameters enable groundbreaking experiments in matter at extreme conditions at the High Energy Density (HED) scientific instrument. The performance of the HED instrument during its first two years of operation, its scientific remit, as well as ongoing installations towards full operation are presented. Scientific goals of HED include the investigation of extreme states of matter created by intense laser pulses, diamond anvil cells, or pulsed magnets, and ultrafast X-ray methods that allow their diagnosis using self-amplified spontaneous emission between 5 and 25keV, coupled with X-ray monochromators and optional seeded beam operation. The HED instrument provides two target chambers, X-ray spectrometers for emission and scattering, X-ray detectors, and a timing tool to correct for residual timing jitter between laser and X-ray pulses.

Details

Database :
OAIster
Notes :
ELETTRONICO, English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1354507627
Document Type :
Electronic Resource