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The AWAKE experiment had a very successful Run 1 (2016-8), demonstrating proton-driven plasma wakefield acceleration for the first time, through the observation of the modulation of a long proton bunch into micro-bunches and the…

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

The long proton beams present at CERN have the potential to evolve into a train of microbunches through the self-modulation instability process. The resonant wakefield generated by a periodic train of proton microbunches can establish a…

Accelerator Physics · Physics 2024-05-01 Hossein Saberi , Guoxing Xia , Linbo Liang , John Patrick Farmer , Alexander Pukhov

Plasma wakefield acceleration is a promising technology to reduce the size of particle accelerators. Use of high energy protons to drive wakefields in plasma has been demonstrated during Run 1 of the AWAKE programme at CERN. Protons of…

Accelerator Physics · Physics 2022-06-14 Edda Gschwendtner , Konstantin Lotov , Patric Muggli , Matthew Wing , Riccardo Agnello , Claudia Christina Ahdida , Maria Carolina Amoedo Goncalves , Yanis Andrebe , Oznur Apsimon , Robert Apsimon , Jordan Matias Arnesano , Anna-Maria Bachmann , Diego Barrientos , Fabian Batsch , Vittorio Bencini , Michele Bergamaschi , Patrick Blanchard , Philip Nicholas Burrows , Birger Buttenschön , Allen Caldwell , James Chappell , Eric Chevallay , Moses Chung , David Andrew Cooke , Heiko Damerau , Can Davut , Gabor Demeter , Amos Christopher Dexter , Steffen Doebert , Francesa Ann Elverson , John Farmer , Ambrogio Fasoli , Valentin Fedosseev , Ricardo Fonseca , Ivo Furno , Spencer Gessner , Aleksandr Gorn , Eduardo Granados , Marcel Granetzny , Tim Graubner , Olaf Grulke , Eloise Daria Guran , Vasyl Hafych , Anthony Hartin , James Henderson , Mathias Hüther , Miklos Kedves , Fearghus Keeble , Vadim Khudiakov , Seong-Yeol Kim , Florian Kraus , Michel Krupa , Thibaut Lefevre , Linbo Liang , Shengli Liu , Nelson Lopes , Miguel Martinez Calderon , Stefano Mazzoni , David Medina Godoy , Joshua Moody , Kookjin Moon , Pablo Israel Morales Guzmán , Mariana Moreira , Tatiana Nechaeva , Elzbieta Nowak , Collette Pakuza , Harsha Panuganti , Ans Pardons , Kevin Pepitone , Aravinda Perera , Jan Pucek , Alexander Pukhov , Rebecca Louise Ramjiawan , Stephane Rey , Adam Scaachi , Oliver Schmitz , Eugenio Senes , Fernando Silva , Luis Silva , Christine Stollberg , Alban Sublet , Catherine Swain , Athanasios Topaloudis , Nuno Torrado , Petr Tuev , Marlene Turner , Francesco Velotti , Livio Verra , Victor Verzilov , Jorge Vieira , Helmut Vincke , Martin Weidl , Carsten Welsch , Manfred Wendt , Peerawan Wiwattananon , Joseph Wolfenden , Benjamin Woolley , Samuel Wyler , Guoxing Xia , Vlada Yarygova , Michael Zepp , Giovanni Zevi Della Porta

In AWAKE a self-modulated proton bunch drives wakefields in a plasma. Recent experiments successfully demonstrated many aspects of the self-modulation of the drive bunch as well as acceleration of test electrons. Next experiments will focus…

Accelerator Physics · Physics 2020-12-21 A. -M. Bachmann , P. Muggli , AWAKE Collaboration

Proton-driven plasma wakefield acceleration allows the transfer of energy from a proton bunch to a trailing bunch of particles, the `witness' particles, via plasma electrons. The AWAKE experiment at CERN is pursuing a demonstration of this…

Accelerator Physics · Physics 2018-12-21 Allen Caldwell , Edda Gschwendtner , Konstantin Lotov , Patric Muggli , Matthew Wing

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…

Particle acceleration in a quasilinear plasma wake provides access to high acceleration gradients while avoiding self-trapping of the background electrons. However, the plasma response to the externally injected witness bunch leads to a…

Self-guided femtosecond laser pulses propagating in low-pressure gas can generate plasma filaments, establishing a new framework for plasma wakefield acceleration. Unlike conventional schemes relying on mechanically confined or preformed…

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

The Advanced Wakefield Experiment (AWAKE) is an accelerator R&D experiment at CERN using, for the first time, a high-energy proton bunch to drive wakefields in plasma and accelerating electrons to the GeV energy scale. The principle of the…

Accelerator Physics · Physics 2020-12-10 Giovanni Zevi Della Porta

We propose a setup for positron acceleration consisting of an electron driver and a laser pulse creating a two-fold plasma column structure. The resulting wakefield is capable of accelerating positron bunches over long distances even when…

Plasma Physics · Physics 2022-05-19 Lars Reichwein , Anton Golovanov , Igor Yu. Kostyukov , Alexander Pukhov

We summarize and explain the realization of witness particle injection into wakefields for the AWAKE experiment. In AWAKE, the plasma wakefields are driven by a self-modulating relativistic proton bunch. To demonstrate that these wakefields…

In an electron wakefield accelerator, an intense laser pulse or charged particle beam excites plasma waves. Under proper conditions, electrons from the background plasma are trapped in the plasma wave and accelerated to ultra-relativistic…

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…

The AWAKE Collaboration is pursuing a demonstration of proton-driven plasma wakefield acceleration of electrons. The AWAKE experiment uses a \SI{400}{GeV/c} proton bunch from the CERN SPS, with a rms bunch length of $6$-\SI{15}{cm}, to…

Accelerator Physics · Physics 2018-10-17 M. Turner

The Advanced Proton Driven Plasma Wakefield Acceleration Experiment (AWAKE) aims at studying plasma wakefield generation and electron acceleration driven by proton bunches. It is a proof-of-principle R&D experiment at CERN and the world's…

Accelerator Physics · Physics 2017-05-31 E. Gschwendtner

A new scheme for accelerating positively charged particles in a plasma wakefield accelerator is proposed. If the proton drive beam propagates in a hollow plasma channel, and the beam radius is of order of the channel width, the space charge…

Plasma wakefield acceleration is a method for accelerating particle beams using electromagnetic fields that are orders of magnitude larger than those found in conventional radio frequency cavities. The core component of a plasma wakefield…

Accelerator Physics · Physics 2020-06-18 S. Gessner , the AWAKE Collaboration

The acceleration gradients generated in a laser- or beam-driven plasma wakefield accelerator are typically three orders of magnitude greater than those produced by a conventional accelerator, and hence plasma accelerators can open a route…