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Laser-driven plasma accelerators provide acceleration gradients three orders of magnitude greater than conventional machines, offering the potential to shrink the length of accelerators by the same factor. To date, laser-acceleration of…

Plasma Physics · Physics 2014-06-20 Simon Martin Hooker

Fundamental questions on the nature of matter and energy have found answers thanks to the use of particle accelerators. Societal applications, such as cancer treatment or cancer imaging, illustrate the impact of accelerators in our current…

Accelerator Physics · Physics 2017-05-31 V. Malka

Intense laser acceleration of ions is inherently difficult due to the velocity mismatch between laser pulses moving at the speed of light and slowly moving massive ions. Instead of directly accelerating the ions, current approaches rely on…

Plasma-Based Acceleration (PBA) has emerged as a promising approach to achieve ultra-high gradient particle acceleration. While extensive PBA studies have been conducted using laser, electron, and proton drivers, significant challenges…

Accelerator Physics · Physics 2025-06-18 Jiangdong Li , Jiancheng Yang , Guoxing Xia , Jie Liu , Wenlong Zhan , Ruihu Zhu

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…

The 2020 update of the European Strategy for Particle Physics emphasised the importance of an intensified and well-coordinated programme of accelerator R&D, supporting the design and delivery of future particle accelerators in a timely,…

Accelerator Physics · Physics 2022-04-01 C. Adolphsen , D. Angal-Kalinin , T. Arndt , M. Arnold , R. Assmann , B. Auchmann , K. Aulenbacher , A. Ballarino , B. Baudouy , P. Baudrenghien , M. Benedikt , S. Bentvelsen , A. Blondel , A. Bogacz , F. Bossi , L. Bottura , S. Bousson , O. Brüning , R. Brinkmann , M. Bruker , O. Brunner , P. N. Burrows , G. Burt , S. Calatroni , K. Cassou , A. Castilla , N. Catalan-Lasheras , E. Cenni , A. Chancé , N. Colino , S. Corde , L. Corner , B. Cros , A. Cross , J. P. Delahaye , G. Devanz , A. -I. Etienvre , P. Evtushenko , A. Faus-Golfe , P. Fazilleau , M. Ferrario , A. Gallo , L. García-Tabarés , C. Geddes , F. Gerigk , F. Gianotti , S. Gilardoni , A. Grudiev , E. Gschwendtner , G. Hoffstaetter , M. Hogan , S. Hooker , A. Hutton , R. Ischebeck , K. Jakobs , P. Janot , E. Jensen , J. Kühn , W. Kaabi , D. Kayran , M. Klein , J. Knobloch , M. Koratzinos , B. Kuske , M. Lamont , A. Latina , P. Lebrun , W. Leemans , D. Li , K. Long , D. Longuevergne , R. Losito , W. Lu , D. Lucchesi , O. Lundh , E. Métral , F. Marhauser , S. Michizono , B. Militsyn , J. Mnich , E. Montesinos , N. Mounet , P. Muggli , P. Musumeci , S. Nagaitsev , T. Nakada , A. Neumann , D. Newbold , P. Nghiem , M. Noe , K. Oide , J. Osterhoff , M. Palmer , N. Pastrone , N. Pietralla , S. Prestemon , E. Previtali , T. Proslier , L. Quettier , T. Raubenheimer , B. Rimmer , L. Rivkin , E. Rochepault , C. Rogers , G. Rosaz , T. Roser , L. Rossi , R. Ruber , D. Schulte , M. Seidel , C. Senatore , B. Shepherd , J. Shi , N. Shipman , A. Specka , S. Stapnes , A. Stocchi , D. Stratakis , I. Syratchev , O. Tanaka , S. Tantawi , C. Tennant , E. Tsesmelis , C. Vaccarezza , A. -M. Valente , P. Védrine , J. Vieira , N. Vinokurov , H. Weise , M. Wenskat , P. Williams , M. Wing , A. Yamamoto , Y. Yamamoto , K. Yokoya , F. Zimmermann

We describe an electron bunch injector scheme based on proton-driven plasma wakefield acceleration for the Electron-Ion Collider. The proton bunches needed to drive the plasma wake are taken from the existing Blue-Ring of RHIC. The…

Accelerator Physics · Physics 2026-05-11 J. P. Farmer , H. Jaworska , A. Caldwell , N. Lopes , A. Pukhov , L Reichwein , F. Willeke , M. Wing

A numerical study on ion acceleration in electrostatic shock waves is presented, with the aim of determining the best plasma configuration to achieve quasi-monoenergetic ion beams in laser-driven systems. It was recently shown that tailored…

Plasma Physics · Physics 2018-03-14 E. Boella , F. Fiúza , A. Stockem Novo , R. Fonseca , L. O. Silva

Electron Ion Collider (EIC) is a particle accelerator facility planned for construction at Brookhaven National Laboratory on Long Island, New York by the United States Department of Energy. EIC will provide capabilities of colliding beams…

Particle-in-cell (PIC) simulation results of sustained acceleration of electron-positron (e+e-) plasmas by comoving electromagnetic (EM) pulses are presented. When a thin slab of overdense e+e- plasma is irradiated with linear-polarized…

Plasma Physics · Physics 2009-11-11 Edison Liang

The interaction of an ultra-intense laser pulse with a near critical density target results in the formation of a plasma channel, a strong azimuthal magnetic field and moving vortices. An application of this is the generation of energetic…

Energetic ions have been observed since the very first laser-plasma experiments.Their origin was found to be the charge separation of electrons heated by thelaser, which transfers energy to the ions accelerated in the field. The adventof…

Accelerator Physics · Physics 2017-05-31 M. Roth , M. Schollmeier

In the effort of achieving high-energetic ion beams from the interaction of ultrashort laser pulses with a plasma, volumetric acceleration mechanisms beyond Target Normal Sheath Acceleration have gained attention. A relativisticly intense…

A new electron acceleration mechanism is identified that develops when a relativistically intense laser irradiates the wedge of an over-dense plasma. This induces a diffracted electromagnetic wave with a significant longitudinal electric…

Plasma Physics · Physics 2022-02-17 S. Marini , P. S. Kleij , M. Grech , M. Raynaud , C. Riconda

The dynamic process of a laser or particle beam propagating from vacuum into underdense plasma has been investigated theoretically. Our theoretical model combines a Lagrangian fluid model with the classic quasistatic wakefield theory. It is…

Plasma Physics · Physics 2017-11-21 Ronghao Hu , Haiyang Lu , Yinren Shou , Jinqing Yu , Chia-erh Chen , Xueqing Yan

A linac (linear accelerator) is a system that allows to accelerate charged particles through a linear trajectory by electromagnetic fields. This kind of accelerator finds several applications in fundamental research and industry. The main…

Accelerator Physics · Physics 2021-03-31 David Alesini

Important features of Electron Cyclotron Resonance Ion Source (ECRIS) operation are accurately reproduced with a numerical code. The code uses the particle-in-cell technique to model a dynamics of ions in ECRIS plasma. It is shown that gas…

Accelerator Physics · Physics 2015-12-23 V. Mironov , S. Bogomolov , A. Bondarchenko , A. Efremov , V. Loginov

New acceleration technology is mandatory for the future elucidation of fundamental particles and their interactions. A promising approach is to exploit the properties of plasmas. Past research has focused on creating large-amplitude plasma…

We propose a new particle acceleration mechanism. Electron can be accelerated to relativistic energy within a few electromagnetic wave cycles through the mechanism which is named electromagnetic and magnetic field resonance acceleration…

Plasma Physics · Physics 2007-05-23 Hong Liu , X. T. He , S. G. Chen , W. Y. Zhang

We propose a new acceleration mechanism for charged particles by using cylindrical or spherical non-linear acoustic waves propagating in ion-electron plasma. The acoustic wave, which is described by the cylindrical or spherical Kortweg-de…

High Energy Astrophysical Phenomena · Physics 2018-12-19 Hideki Ishihara , Ken Matsuno , Masaaki Takahashi , Syuto Teramae