CERN Accelerating science

CERN Document Server 6 εγγραφές βρέθηκαν  Η έρευνα πήρε 0.64 δευτερόλεπτα. 
1.
A beamline to control longitudinal phase space whilst transporting laser wakefield accelerated electrons to an undulator / Dewhurst, KayA (Manchester U. ; Cockcroft Inst. Accel. Sci. Tech. ; CERN) ; Muratori, Bruno D (Cockcroft Inst. Accel. Sci. Tech. ; Daresbury) ; Brunetti, Enrico (SUPA, UK ; Strathclyde U.) ; van derGeer, Bas (Pulsar Physics, Eindhoven) ; de Loos, Marieke (Pulsar Physics, Eindhoven) ; Owen, Hywel L (Cockcroft Inst. Accel. Sci. Tech. ; Daresbury) ; Wiggins, S Mark (SUPA, UK ; Strathclyde U.) ; Jaroszynski, Dino A (SUPA, UK ; Strathclyde U.)
Laser wakefield accelerators (LWFAs) can produce high-energy electron bunches in short distances. Successfully coupling these sources with undulators has the potential to form an LWFA-driven free-electron laser (FEL), providing high-intensity short-wavelength radiation. [...]
2023 - 13 p. - Published in : Sci. Rep. 13 (2023) 8831 Fulltext: PDF;
2.
EuPRAXIA – a compact, cost-efficient particle and radiation source / Weikum, M K (DESY) ; Akhter, T (INFN, Naples) ; Alesini, P D (LNF, Dafne Light) ; Alexandrova, A S (Cockcroft Inst. Accel. Sci. Tech. ; Liverpool U.) ; Anania, M P (LNF, Dafne Light) ; Andreev, N E (Lebedev Inst. ; Moscow, MIPT) ; Andriyash, I (SOLEIL, Saint-Aubin) ; Aschikhin, A (DESY) ; Assmann, R W (DESY) ; Audet, T (LPGP, Orsay) et al.
Plasma accelerators present one of the most suitable candidates for the development of more compact particle acceleration technologies, yet they still lag behind radiofrequency (RF)-based devices when it comes to beam quality, control, stability and power efficiency. The Horizon 2020-funded project EuPRAXIA (“European Plasma Research Accelerator with eXcellence In Applications”) aims to overcome the first three of these hurdles by developing a conceptual design for a first international user facility based on plasma acceleration. [...]
2019 - 9 p. - Published in : AIP Conf. Proc. 2160 (2019) 040012
In : 25th Conference on Application of Accelerators in Research and Industry (CAARI 2018), Grapevine, TX, United States, 12 - 17 Aug 2018, pp.040012
3.
An experimental study of focused very high energy electron beams for radiotherapy / Kokurewicz, Karolina (Glasgow U.) ; Brunetti, Enrico (Glasgow U.) ; Curcio, Alessandro (CERN) ; Gamba, Davide (CERN) ; Garolfi, Luca (CERN) ; Gilardi, Antonio (CERN ; U. Naples (main) ; INFN, Naples) ; Senes, Eugenio (CERN ; JAI, UK) ; Sjobak, Kyrre Ness (CERN ; U. Oslo (main)) ; Farabolini, Wilfrid (CERN ; U. Paris-Saclay) ; Corsini, Roberto (CERN) et al.
Very high energy electron (VHEE) beams have been proposed as an alternative radiotherapy modality to megavoltage photons; they penetrate deeply without significant scattering in inhomogeneous tissue because of their high relativistic inertia. However, the depth dose distribution of a single, collimated VHEE beam is quasi-uniform, which can lead to healthy tissue being overexposed. [...]
2021 - 7 p. - Published in : Commun. Phys. 4 (2021) 33 Fulltext: PDF;
4.
EuPRAXIA Conceptual Design Report / Assmann, R W (DESY) ; Weikum, M K (DESY) ; Akhter, T (INFN, Naples) ; Alesini, D (Frascati) ; Alexandrova, A S (Cockcroft Inst. Accel. Sci. Tech. ; U. Liverpool (main)) ; Anania, M P (Frascati) ; Andreev, N E (ITAE, Moscow ; Moscow, MIPT) ; Andriyash, I (Weizmann Inst.) ; Artioli, M (ENEA, Bologna) ; Aschikhin, A (DESY) et al.
This report presents the conceptual design of a new European research infrastructure EuPRAXIA. The concept has been established over the last four years in a unique collaboration of 41 laboratories within a Horizon 2020 design study funded by the European Union. [...]
2020 - 610 p. - Published in : Eur. Phys. J. Spec. Top. 229 (2020) 3675-4284
- Published in : Eur. Phys. J. Spec. Top. 229 (2020) 11-31 Fulltext from Publisher: PDF;
5.
The role of the gas/plasma plume and self-focusing in a gas-filled capillary discharge waveguide for high-power laser-plasma applications / Ciocarlan, C. (Strathclyde U. ; Bucharest, IFIN-HH) ; Wiggins, M. (Strathclyde U.) ; Islam, M. R. (Strathclyde U.) ; Ersfeld, B. (Strathclyde U.) ; Abuazoum, S. (Strathclyde U.) ; Wilson, R. (Strathclyde U.) ; Aniculaesei, C. (Strathclyde U.) ; Welsh, G. H. (Strathclyde U.) ; Vieux, G. (Strathclyde U.) ; Jaroszynski, D. A. (Strathclyde U.)
The role of the gas/plasma plume at the entrance of a gas-filled capillary discharge plasma waveguide in increasing the laser intensity has been investigated. Distinction is made between neutral gas and hot plasma plumes that, respectively, develop before and after discharge breakdown. [...]
CERN-ACC-2013-0316.- Geneva : CERN, 2013 - Published in : 10.1063/1.4822333 Fulltext: PDF;
6.
Lasing with FELIX / Van Amersfoort, P W ; Bakker, R J ; Jaroszynski, D A ; Oepts, D ; Van der Geer, C A J ; Van der Meer, A F G
1992 External link: Published version from JACoW
In : 3rd European Particle Accelerator Conference, Berlin, Germany, 24 - 28 Mar 1992, pp.46

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6 Jaroszynski, D
3 Jaroszynski, D.
1 Jaroszynski, D. A.
6 Jaroszynski, Dino
6 Jaroszynski, Dino A
2 Jaroszynski, Dino Anthony
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