SOLARIS National Synchrotron Radiation Centre in Krakow, Poland
-
Published:2023-01-09
Issue:1
Volume:138
Page:
-
ISSN:2190-5444
-
Container-title:The European Physical Journal Plus
-
language:en
-
Short-container-title:Eur. Phys. J. Plus
Author:
Szlachetko Jakub, Szade Jacek, Beyer EdytaORCID, Błachucki Wojciech, Ciochoń Piotr, Dumas Paul, Freindl Kinga, Gazdowicz Grzegorz, Glatt Sebastian, Guła Krzysztof, Hormes Josef, Indyka Paulina, Klonecka Agnieszka, Kołodziej Jacek, Kołodziej Tomasz, Korecki Józef, Korecki Paweł, Kosiorowski Filip, Kosowska Karolina, Kowalski Grzegorz, Kozak Maciej, Kozioł Paulina, Kwiatek Wojciech, Liberda Danuta, Lichtenberg Henning, Madej Ewa, Mandziak Anna, Marendziak Andrzej, Matlak Krzysztof, Maximenko Alexey, Nita Paweł, Olszowska Natalia, Panaś Roman, Partyka-Jankowska Ewa, Piszak Marcel, Prange Alexander, Rawski Michał, Roman Maciej, Rosmus Marcin, Sikora Marcin, Sławek Joanna, Sobol Tomasz, Sowa Katarzyna, Spiridis Nika, Stępień Joanna, Szczepanik Magdalena, Ślęzak Michał, Ślęzak Tomasz, Tyliszczak Tolek, Ważny Grzegorz, Wiechecki Jarosław, Wilgocka-Ślęzak Dorota, Wolanin Barbara, Wróbel Paweł, Wróbel Tomasz, Zając Marcin, Wawrzyniak Adriana, Stankiewicz Marek
Abstract
AbstractThe SOLARIS synchrotron located in Krakow, Poland, is a third-generation light source operating at medium electron energy. The first synchrotron light was observed in 2015, and the consequent development of infrastructure lead to the first users’ experiments at soft X-ray energies in 2018. Presently, SOLARIS expands its operation towards hard X-rays with continuous developments of the beamlines and concurrent infrastructure. In the following, we will summarize the SOLARIS synchrotron design, and describe the beamlines and research infrastructure together with the main performance parameters, upgrade, and development plans.
Funder
H2020 Spreading Excellence and Widening Participation
Publisher
Springer Science and Business Media LLC
Subject
General Physics and Astronomy,Fluid Flow and Transfer Processes
Reference49 articles.
1. A.I. Wawrzyniak, C.J. Bocchetta, S.C. Leemann, and S. Thorin, Proc. IPAC'11, San Sebastian, Spain, THPC123 3173–3175 (2011) 2. A.I. Wawrzyniak, A. Marendziak, A. Kisiel, P. Borowiec, R. Nietubyć, J. Wiechecki, K. Karaś, K. Szamota-Leandersson, M. Zając, C.J. Bocchetta, M.J. Stankiewicz, Nucl. Instrum. Methods. Phys. Res. B 411, 4–11 (2017). https://doi.org/10.1016/j.nimb.2016.12.046 3. A.I. Wawrzyniak, R. Panaś, A. Curcio, M. Knafel, G. Kowalski, A. Marendziak, Nucl. Instrum. Methods. Phys Res. B 493, 19–27 (2021). https://doi.org/10.1016/j.nimb.2021.01.020 4. Synchrotron Radiation in Natural Science 20 (2020) 5. M. Zając, T. Giela, K. Freindl, K. Kollbek, J. Korecki, E. Madej, K. Pitala, A. Kozioł-Rachwał, M. Sikora, N. Spiridis, J. Stępień, A. Szkudlarek, M. Ślęzak, T. Ślęzak, D. Wilgocka-Ślęzak, Nucl. Instrum. Methods. Phys. Res. B 492, 43–48 (2021). https://doi.org/10.1016/j.nimb.2020.12.024
Cited by
26 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献
|
|