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Performance and characterization of the FinEstBeAMS beamline at the MAX IV Laboratory

FinEstBeAMS (Finnish–Estonian Beamline for Atmospheric and Materials Sciences) is a multidisciplinary beamline constructed at the 1.5 GeV storage ring of the MAX IV synchrotron facility in Lund, Sweden. The beamline covers an extremely wide photon energy range, 4.5–1300 eV, by utilizing a single ell...

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Autores principales: Chernenko, Kirill, Kivimäki, Antti, Pärna, Rainer, Wang, Weimin, Sankari, Rami, Leandersson, Mats, Tarawneh, Hamed, Pankratov, Vladimir, Kook, Mati, Kukk, Edwin, Reisberg, Liis, Urpelainen, Samuli, Käämbre, Tanel, Siewert, Frank, Gwalt, Grzegorz, Sokolov, Andrey, Lemke, Stephanie, Alimov, Svyatoslav, Knedel, Jeniffa, Kutz, Oliver, Seliger, Tino, Valden, Mika, Hirsimäki, Mika, Kirm, Marco, Huttula, Marko
Formato: Online Artículo Texto
Lenguaje:English
Publicado: International Union of Crystallography 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8415336/
https://www.ncbi.nlm.nih.gov/pubmed/34475309
http://dx.doi.org/10.1107/S1600577521006032
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author Chernenko, Kirill
Kivimäki, Antti
Pärna, Rainer
Wang, Weimin
Sankari, Rami
Leandersson, Mats
Tarawneh, Hamed
Pankratov, Vladimir
Kook, Mati
Kukk, Edwin
Reisberg, Liis
Urpelainen, Samuli
Käämbre, Tanel
Siewert, Frank
Gwalt, Grzegorz
Sokolov, Andrey
Lemke, Stephanie
Alimov, Svyatoslav
Knedel, Jeniffa
Kutz, Oliver
Seliger, Tino
Valden, Mika
Hirsimäki, Mika
Kirm, Marco
Huttula, Marko
author_facet Chernenko, Kirill
Kivimäki, Antti
Pärna, Rainer
Wang, Weimin
Sankari, Rami
Leandersson, Mats
Tarawneh, Hamed
Pankratov, Vladimir
Kook, Mati
Kukk, Edwin
Reisberg, Liis
Urpelainen, Samuli
Käämbre, Tanel
Siewert, Frank
Gwalt, Grzegorz
Sokolov, Andrey
Lemke, Stephanie
Alimov, Svyatoslav
Knedel, Jeniffa
Kutz, Oliver
Seliger, Tino
Valden, Mika
Hirsimäki, Mika
Kirm, Marco
Huttula, Marko
author_sort Chernenko, Kirill
collection PubMed
description FinEstBeAMS (Finnish–Estonian Beamline for Atmospheric and Materials Sciences) is a multidisciplinary beamline constructed at the 1.5 GeV storage ring of the MAX IV synchrotron facility in Lund, Sweden. The beamline covers an extremely wide photon energy range, 4.5–1300 eV, by utilizing a single elliptically polarizing undulator as a radiation source and a single grazing-incidence plane grating monochromator to disperse the radiation. At photon energies below 70 eV the beamline operation relies on the use of optical and thin-film filters to remove higher-order components from the monochromated radiation. This paper discusses the performance of the beamline, examining such characteristics as the quality of the gratings, photon energy calibration, photon energy resolution, available photon flux, polarization quality and focal spot size.
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spelling pubmed-84153362021-09-16 Performance and characterization of the FinEstBeAMS beamline at the MAX IV Laboratory Chernenko, Kirill Kivimäki, Antti Pärna, Rainer Wang, Weimin Sankari, Rami Leandersson, Mats Tarawneh, Hamed Pankratov, Vladimir Kook, Mati Kukk, Edwin Reisberg, Liis Urpelainen, Samuli Käämbre, Tanel Siewert, Frank Gwalt, Grzegorz Sokolov, Andrey Lemke, Stephanie Alimov, Svyatoslav Knedel, Jeniffa Kutz, Oliver Seliger, Tino Valden, Mika Hirsimäki, Mika Kirm, Marco Huttula, Marko J Synchrotron Radiat Beamlines FinEstBeAMS (Finnish–Estonian Beamline for Atmospheric and Materials Sciences) is a multidisciplinary beamline constructed at the 1.5 GeV storage ring of the MAX IV synchrotron facility in Lund, Sweden. The beamline covers an extremely wide photon energy range, 4.5–1300 eV, by utilizing a single elliptically polarizing undulator as a radiation source and a single grazing-incidence plane grating monochromator to disperse the radiation. At photon energies below 70 eV the beamline operation relies on the use of optical and thin-film filters to remove higher-order components from the monochromated radiation. This paper discusses the performance of the beamline, examining such characteristics as the quality of the gratings, photon energy calibration, photon energy resolution, available photon flux, polarization quality and focal spot size. International Union of Crystallography 2021-07-08 /pmc/articles/PMC8415336/ /pubmed/34475309 http://dx.doi.org/10.1107/S1600577521006032 Text en © Kirill Chernenko et al. 2021 https://creativecommons.org/licenses/by/4.0/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.
spellingShingle Beamlines
Chernenko, Kirill
Kivimäki, Antti
Pärna, Rainer
Wang, Weimin
Sankari, Rami
Leandersson, Mats
Tarawneh, Hamed
Pankratov, Vladimir
Kook, Mati
Kukk, Edwin
Reisberg, Liis
Urpelainen, Samuli
Käämbre, Tanel
Siewert, Frank
Gwalt, Grzegorz
Sokolov, Andrey
Lemke, Stephanie
Alimov, Svyatoslav
Knedel, Jeniffa
Kutz, Oliver
Seliger, Tino
Valden, Mika
Hirsimäki, Mika
Kirm, Marco
Huttula, Marko
Performance and characterization of the FinEstBeAMS beamline at the MAX IV Laboratory
title Performance and characterization of the FinEstBeAMS beamline at the MAX IV Laboratory
title_full Performance and characterization of the FinEstBeAMS beamline at the MAX IV Laboratory
title_fullStr Performance and characterization of the FinEstBeAMS beamline at the MAX IV Laboratory
title_full_unstemmed Performance and characterization of the FinEstBeAMS beamline at the MAX IV Laboratory
title_short Performance and characterization of the FinEstBeAMS beamline at the MAX IV Laboratory
title_sort performance and characterization of the finestbeams beamline at the max iv laboratory
topic Beamlines
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8415336/
https://www.ncbi.nlm.nih.gov/pubmed/34475309
http://dx.doi.org/10.1107/S1600577521006032
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