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FemtoMAX – an X-ray beamline for structural dynamics at the short-pulse facility of MAX IV

The FemtoMAX beamline facilitates studies of the structural dynamics of materials. Such studies are of fundamental importance for key scientific problems related to programming materials using light, enabling new storage media and new manufacturing techniques, obtaining sustainable energy by mimicki...

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Autores principales: Enquist, Henrik, Jurgilaitis, Andrius, Jarnac, Amelie, Bengtsson, Åsa U. J., Burza, Matthias, Curbis, Francesca, Disch, Christian, Ekström, J. Carl, Harb, Maher, Isaksson, Lennart, Kotur, Marija, Kroon, David, Lindau, Filip, Mansten, Erik, Nygaard, Jesper, Persson, Anna I. H., Pham, Van Thai, Rissi, Michael, Thorin, Sara, Tu, Chien-Ming, Wallén, Erik, Wang, Xiaocui, Werin, Sverker, Larsson, Jörgen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: International Union of Crystallography 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5829682/
https://www.ncbi.nlm.nih.gov/pubmed/29488939
http://dx.doi.org/10.1107/S1600577517017660
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author Enquist, Henrik
Jurgilaitis, Andrius
Jarnac, Amelie
Bengtsson, Åsa U. J.
Burza, Matthias
Curbis, Francesca
Disch, Christian
Ekström, J. Carl
Harb, Maher
Isaksson, Lennart
Kotur, Marija
Kroon, David
Lindau, Filip
Mansten, Erik
Nygaard, Jesper
Persson, Anna I. H.
Pham, Van Thai
Rissi, Michael
Thorin, Sara
Tu, Chien-Ming
Wallén, Erik
Wang, Xiaocui
Werin, Sverker
Larsson, Jörgen
author_facet Enquist, Henrik
Jurgilaitis, Andrius
Jarnac, Amelie
Bengtsson, Åsa U. J.
Burza, Matthias
Curbis, Francesca
Disch, Christian
Ekström, J. Carl
Harb, Maher
Isaksson, Lennart
Kotur, Marija
Kroon, David
Lindau, Filip
Mansten, Erik
Nygaard, Jesper
Persson, Anna I. H.
Pham, Van Thai
Rissi, Michael
Thorin, Sara
Tu, Chien-Ming
Wallén, Erik
Wang, Xiaocui
Werin, Sverker
Larsson, Jörgen
author_sort Enquist, Henrik
collection PubMed
description The FemtoMAX beamline facilitates studies of the structural dynamics of materials. Such studies are of fundamental importance for key scientific problems related to programming materials using light, enabling new storage media and new manufacturing techniques, obtaining sustainable energy by mimicking photosynthesis, and gleaning insights into chemical and biological functional dynamics. The FemtoMAX beamline utilizes the MAX IV linear accelerator as an electron source. The photon bursts have a pulse length of 100 fs, which is on the timescale of molecular vibrations, and have wavelengths matching interatomic distances (Å). The uniqueness of the beamline has called for special beamline components. This paper presents the beamline design including ultrasensitive X-ray beam-position monitors based on thin Ce:YAG screens, efficient harmonic separators and novel timing tools.
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spelling pubmed-58296822018-03-19 FemtoMAX – an X-ray beamline for structural dynamics at the short-pulse facility of MAX IV Enquist, Henrik Jurgilaitis, Andrius Jarnac, Amelie Bengtsson, Åsa U. J. Burza, Matthias Curbis, Francesca Disch, Christian Ekström, J. Carl Harb, Maher Isaksson, Lennart Kotur, Marija Kroon, David Lindau, Filip Mansten, Erik Nygaard, Jesper Persson, Anna I. H. Pham, Van Thai Rissi, Michael Thorin, Sara Tu, Chien-Ming Wallén, Erik Wang, Xiaocui Werin, Sverker Larsson, Jörgen J Synchrotron Radiat Beamlines The FemtoMAX beamline facilitates studies of the structural dynamics of materials. Such studies are of fundamental importance for key scientific problems related to programming materials using light, enabling new storage media and new manufacturing techniques, obtaining sustainable energy by mimicking photosynthesis, and gleaning insights into chemical and biological functional dynamics. The FemtoMAX beamline utilizes the MAX IV linear accelerator as an electron source. The photon bursts have a pulse length of 100 fs, which is on the timescale of molecular vibrations, and have wavelengths matching interatomic distances (Å). The uniqueness of the beamline has called for special beamline components. This paper presents the beamline design including ultrasensitive X-ray beam-position monitors based on thin Ce:YAG screens, efficient harmonic separators and novel timing tools. International Union of Crystallography 2018-02-14 /pmc/articles/PMC5829682/ /pubmed/29488939 http://dx.doi.org/10.1107/S1600577517017660 Text en © Henrik Enquist et al. 2018 http://creativecommons.org/licenses/by/2.0/uk/ This is an open-access article distributed under the terms of the Creative Commons Attribution (CC-BY) Licence, which permits unrestricted use, distribution, and reproduction in any medium, provided the original authors and source are cited.http://creativecommons.org/licenses/by/2.0/uk/
spellingShingle Beamlines
Enquist, Henrik
Jurgilaitis, Andrius
Jarnac, Amelie
Bengtsson, Åsa U. J.
Burza, Matthias
Curbis, Francesca
Disch, Christian
Ekström, J. Carl
Harb, Maher
Isaksson, Lennart
Kotur, Marija
Kroon, David
Lindau, Filip
Mansten, Erik
Nygaard, Jesper
Persson, Anna I. H.
Pham, Van Thai
Rissi, Michael
Thorin, Sara
Tu, Chien-Ming
Wallén, Erik
Wang, Xiaocui
Werin, Sverker
Larsson, Jörgen
FemtoMAX – an X-ray beamline for structural dynamics at the short-pulse facility of MAX IV
title FemtoMAX – an X-ray beamline for structural dynamics at the short-pulse facility of MAX IV
title_full FemtoMAX – an X-ray beamline for structural dynamics at the short-pulse facility of MAX IV
title_fullStr FemtoMAX – an X-ray beamline for structural dynamics at the short-pulse facility of MAX IV
title_full_unstemmed FemtoMAX – an X-ray beamline for structural dynamics at the short-pulse facility of MAX IV
title_short FemtoMAX – an X-ray beamline for structural dynamics at the short-pulse facility of MAX IV
title_sort femtomax – an x-ray beamline for structural dynamics at the short-pulse facility of max iv
topic Beamlines
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5829682/
https://www.ncbi.nlm.nih.gov/pubmed/29488939
http://dx.doi.org/10.1107/S1600577517017660
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