Zobrazeno 1 - 4
of 4
pro vyhledávání: '"Vojtěch Stránský"'
Autor:
Anna Cimmino, Iva Ambrožová, Silvia Motta, Roberto Versaci, Veronika Olšovcová, David Chvátil, Václav Olšanský, Roman Truneček, Andriy Velyhan, Vojtěch Stránský, Jaroslav Šolc
Publikováno v:
Radiation protection dosimetry. 198(9-11)
The Microtron MT25 is a cyclic electron accelerator with a Kapitza resonator, maximum beam energy of 25 MeV, standard repetition frequency of 423 Hz, pulse length of 3.5 μs and mean current of 30 μA. Studies at conventional particle accelerators al
Autor:
Roman Trunecek, Veronika Olšovcová, Roberto Versaci, Vojtěch Stránský, Anna Cimmino, David Horváth
Publikováno v:
Journal of radiological protection : official journal of the Society for Radiological Protection. 41(4)
The Extreme Light Infrastructure (ELI) Beamlines laser-driven accelerator facility is set to operate the most intense non-military laser system in the world, with ultra-high power up to 10 PW, concentrated plasma intensities of up to 1024 W cm−2, a
Autor:
Lorenzo Giuffrida, R. Dudžák, Sushil Kumar Singh, Michal Krupka, Josef Krasa, Vojtěch Stránský, Veronika Olšovcová, Daniele Margarone, Roberto Versaci, Valeria Istokskaia
Publikováno v:
Istokskaia, V, Stránský, V, Giuffrida, L, Versaci, R, Olšovcová, V, Singh, S, Krupka, M, Dudžák, R, Krása, J & Margarone, D 2021, Online measurements of gamma radiation from laser-plasma and signal unfolding using a scintillator calorimeter . in S S Bulanov, J Schreiber & C B Schroeder (eds), Laser Acceleration of Electrons, Protons, and Ions VI ., 117790D, Proceedings of SPIE-The International Society for Optical Engineering, vol. 11779, SPIE-The International Society for Optical Engineering, Laser Acceleration of Electrons, Protons, and Ions VI 2021, Virtual, Online, Czech Republic, 19/04/2021 . https://doi.org/10.1117/12.2590815
With the development of high-intensity and high-repetition-rate laser systems, it has become crucial to be able to measure and characterize the high-energy gamma radiation from laser-matter interaction in real-time. Therefore, a scintillator-based el
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::dd4912598376aa9578c9e16761c4ea6b
https://pure.qub.ac.uk/en/publications/f8b44cb6-4ceb-4f3c-ba1d-6c7d5b502335
https://pure.qub.ac.uk/en/publications/f8b44cb6-4ceb-4f3c-ba1d-6c7d5b502335
Autor:
Daniele Margarone, Josef Krasa, David Neely, R. Versaci, R. Dudžák, M. Krupka, Andriy Velyhan, Lorenzo Giuffrida, Veronika Olšovcová, Maksym Tryus, Sushil Kumar Singh, Valeria Istokskaia, F. Grepl, Vojtěch Stránský
Publikováno v:
Istokskaia, V, Stránský, V, Giuffrida, L, Versaci, R, Grepl, F, Tryus, M, Velyhan, A, Dudžák, R, Krása, J, Krupka, M, Singh, S, Neely, D, Olšovcová, V & Margarone, D 2021, ' Experimental tests and signal unfolding of a scintillator calorimeter for laser-plasma characterization ', Journal of Instrumentation, vol. 16, no. 2, T02006 . https://doi.org/10.1088/1748-0221/16/02/T02006
With the development of high-intensity and high-repetition rate laser systems, it has become crucial to be able to detect and characterize in real time the high-energy byproducts (mainly electrons and photons) of laser-generated plasma. A novel multi
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::c64070ada2a572c7b07b671fcb9f4b5a
https://pure.qub.ac.uk/en/publications/79e0bf7e-bcc9-417b-8ff6-65cbcf390c6b
https://pure.qub.ac.uk/en/publications/79e0bf7e-bcc9-417b-8ff6-65cbcf390c6b