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Related papers: RF injector design studies for the trailing witnes…

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At EuPRAXIA@SPARC_LAB, the unique combination of an advanced high-brightness RF injector and a plasma-based accelerator will drive a new multi-disciplinary user-facility. The facility, that is currently under study at INFN-LNF Laboratories…

The EuPRAXIA project aims to construct two state-of-the-art accelerator facilities based on plasma accelerator technology. Plasma-based accelerators offer the possibility of a significant reduction in facility size and cost savings over…

The Horizon 2020 Project EuPRAXIA (European Plasma Research Accelerator with eXcellence In Applications) is preparing a conceptual design for a highly compact and cost-effective European facility with multi-GeV electron beams using plasma…

Plasma-based accelerators are compact and provide high gradients, yet their practical use has been limited by energy gain, stability, beam quality, and energy transfer efficiency. Here, we address several of these challenges simultaneously…

In this paper, we report results of simulations, in the framework of both EuPRAXIA \cite{Walk2017} and EuPRAXIA@SPARC\_LAB \cite{Ferr2017} projects, aimed at delivering a high brightness electron bunch for driving a Free Electron Laser…

Next-generation plasma-based accelerators can push electron bunches to gigaelectronvolt energies within centimetre distances. The plasma, excited by a driver pulse, generates large electric fields that can efficiently accelerate a trailing…

The development of compact accelerator facilities providing high-brightness beams is one of the most challenging tasks in the field of next-generation compact and cost affordable particle accelerators. Recent results obtained at SPARC\_LAB…

Next-generation plasma-based accelerators can push electron beams to GeV energies within centimetre distances. The plasma, excited by a driver pulse, is indeed able to sustain huge electric fields that can efficiently accelerate a trailing…

An active plasma lens focuses the beam in both the horizontal and vertical planes simultaneously using a magnetic field generated by a discharge current through the plasma. A beam size of 5--10 $\mu$m can be achieved within a short distance…

Accelerator Physics · Physics 2021-12-13 S. -Y. Kim , K. Moon , M. Chung , K. N. Sjobak , E. Adli , S. Doebert , M. Dayyani , E. S. Yoon , I. Nam , G. Hahn

We are proposing a facility based on high gradient acceleration via x-band RF structures and plasma acceleration. We plan to reach an electron energy of the order of 1 GeV, suitable to drive a Free Electron Laser for applications in the so…

A design study of the diagnostics of a high brightness linac, based on X-band structures, and a plasma accelerator stage, has been delivered in the framework of the EuPRAXIA@SPARC_LAB project. In this paper, we present a conceptual design…

Plasma waves generated in the wake of intense, relativistic laser or particle beams can accelerate electron bunches to giga-electronvolt (GeV) energies in centimetre-scale distances. This allows the realization of compact accelerators…

On the wake of the results obtained so far at the SPARC\_LAB test-facility at the Laboratori Nazionali di Frascati (Italy), we are currently investigating the possibility to design and build a new multi-disciplinary user-facility, equipped…

Accelerator Physics · Physics 2018-12-26 M. Ferrario , D. Alesini , M. P. Anania , M. Artioli , A. Bacci , S. Bartocci , R. Bedogni , M. Bellaveglia , A. Biagioni , F. Bisesto , F. Brandi , E. Brentegani , F. Broggi , B. Buonomo , P. L. Campana , G. Campogiani , C. Cannaos , S. Cantarella , F. Cardelli , M. Carpanese , M. Castellano , G. Castorina , N. Catalan Lasheras , E. Chiadroni , A. Cianchi , R. Cimino , F. Ciocci , D. Cirrincione , G. A. P. Cirrone , R. Clementi , M. Coreno , R. Corsini , M. Croia , A. Curcio , G. Costa , C. Curatolo , G. Cuttone , S. Dabagov , G. Dattoli , G. D'Auria , I. Debrot , M. Diomede , A. Drago , D. Di Giovenale , S. Di Mitri , G. Di Pirro , A. Esposito , M. Faiferri , L. Ficcadenti , F. Filippi , O. Frasciello , A. Gallo , A. Ghigo , L. Giannessi , A. Giribono , L. Gizzi , A. Grudiev , S. Guiducci , P. Koester , S. Incremona , F. Iungo , L. Labate , A. Latina , S. Licciardi , V. Lollo , S. Lupi , R. Manca , A. Marcelli , M. Marini , A. Marocchino , M. Marongiu , V. Martinelli , C. Masciovecchio , C. Mastino , A. Michelotti , C. Milardi , V. Minicozzi , F. Mira , S. Morante , A. Mostacci , F. Nguyen , S. Pagnutti , L. Pellegrino , A. Petralia , V. Petrillo , L. Piersanti , S. Pioli , D. Polese , R. Pompili , F. Pusceddu , A. Ricci , R. Ricci , R. Rochow , S. Romeo , J. B. Rosenzweig , M. Rossetti Conti , A. R. Rossi , U. Rotundo , L. Sabbatini , E. Sabia , O. Sans Plannell , D. Schulte , J. Scifo , V. Scuderi , L. Serafini , B. Spataro , A. Stecchi , A. Stella , V. Shpakov , F. Stellato , E. Turco , C. Vaccarezza , A. Vacchi , A. Vannozzi , A. Variola , S. Vescovi , F. Villa , W. Wuensch , A. Zigler , M. Zobov

Beam-driven plasma wakefield accelerators typically use the external injection scheme to ensure controllable beam quality at injection. However, the externally injected witness bunch may exhibit a non-Gaussian transverse density…

Accelerator Physics · Physics 2022-08-10 Linbo Liang , Guoxing Xia , Alexander Pukhov , John Patrick Farmer

Plasma wakefield accelerators are capable of sustaining gigavolt-per-centimeter accelerating fields, surpassing the electric breakdown threshold in state-of-the-art accelerator modules by 3-4 orders of magnitude. Beam-driven wakefields…

The intrinsic constraints in the amplitude of the accelerating fields sustainable by radio-frequency accelerators demand for the pursuit of alternative and more compact acceleration schemes. Among these, plasma-based accelerators are…

Plasma Physics · Physics 2018-06-08 Aaron Alejo , Roman Walczak , Gianluca Sarri

The realization of a plasma based user facility on the model of EuPRAXIA@SPARC\_LAB requires to design a working point for the operation that allows to get an high accelerating gradient preserving a low emittance and low energy spread of…

The FLASHForward experimental facility is a high-performance test-bed for precision plasma-wakefield research, aiming to accelerate high-quality electron beams to GeV-levels in a few centimetres of ionised gas. The plasma is created by…

In the Phase 2 of the AWAKE first experimental run (from May to November 2018), an electron beam was used to probe and test proton-driven wakefield acceleration in a rubidium plasma column. In this work, we analyze the overall charge…

Plasma Wakefield Acceleration represents one of the most promising techniques able to overcome the limits of conventional RF technology and make possible the development of compact accelerators. With respect to the laser-driven schemes, the…

Accelerator Physics · Physics 2020-01-08 R. Pompili , E. Chiadroni , A. Cianchi , A. Del Dotto , L. Faillace , M. Ferrario , P. Iovine , M. R. Masullo
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