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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…

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…

We expand on the material that was published in the previous Proceedings of the CERN Accelerator School on Plasma Wakefield Acceleration. The material focused on Plasma Wakefield Acceleration in the short, narrow bunch regime. After a brief…

Accelerator Physics · Physics 2020-07-13 Patric Muggli

The initial beam emittance determines the maximum wakefield amplitude that can be reached as a result of beam self-modulation in the plasma. The wakefield excited by the fully self-modulated beam decreases linearly with the increase of the…

Plasma Physics · Physics 2016-01-20 K. V. Lotov

Accelerating particles to high energies in plasma wakefields is considered to be a promising technique with good energy efficiency and high gradient. While important progress has been made in plasma-based electron acceleration, positron…

Plasma Physics · Physics 2021-07-05 C. S. Hue , G. J. Cao , I. A. Andriyash , A. Knetsch , M. J. Hogan , E. Adli , S. Gessner , S. Corde

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…

In 2017, AWAKE demonstrated the seeded self-modulation (SSM) of a 400 GeV proton beam from the Super Proton Synchrotron (SPS) at CERN. The angular distribution of the protons deflected due to SSM is a quantitative measure of the process,…

Plasma wakefield acceleration, either laser driven or electron-bunch driven, has been demonstrated to hold great potential. However, it is not obvious how to scale these approaches to bring particles up to the TeV regime. In this paper, we…

Accelerator Physics · Physics 2015-05-13 Allen Caldwell , Konstantin Lotov , Alexander Pukhov , Frank Simon

AWAKE, the Advanced Proton-Driven Plasma Wakefield Acceleration Experiment, is a proof-of-principle R&D experiment at CERN using a 400 GeV/c proton beam from the CERN SPS (longitudinal beam size sigma_z = 12 cm) which will be sent into a 10…

Plasma Physics · Physics 2016-08-03 M. Turner , A. Petrenko , B. Biskup , S. Burger , E. Gschwendtner , K. V. Lotov , S. Mazzoni , H. Vincke

The dependence of wakefield amplitude and phase on beam and plasma parameters is studied in the parameter area of interest for self-modulating proton beam-driven plasma wakefield acceleration. The wakefield sensitivity to small parameter…

Plasma Physics · Physics 2015-06-19 K. V. Lotov , V. A. Minakov , A. P. Sosedkin

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

It is demonstrated that the performance of the self-modulated proton driver plasma wakefield accelerator (SM-PDPWA) is strongly affected by the reduced phase velocity of the plasma wave. Using analytical theory and particle-in-cell…

Plasma Physics · Physics 2015-05-30 A. Pukhov , N. Kumar , T. Tückmantel , A. Upadhyay , K. Lotov , P. Muggli , V. Khudik , C. Siemon , G. Shvets

An analytical model for the self-modulation instability of a long relativistic proton bunch propagating in uniform plasmas is developed. The self-modulated proton bunch resonantly excites a large amplitude plasma wave (wake field), which…

Plasma Physics · Physics 2015-05-18 Naveen Kumar , Alexander Pukhov , Konstantin Lotov

We discuss the level of natural shot noise in a proton bunch-driven plasma accelerator. The required seeding for the plasma wake field must be larger than the cumulative shot noise. This is the necessary condition for the axial symmetry of…

Plasma Physics · Physics 2013-07-16 K. V. Lotov , G. Z. Lotova , V. I. Lotov , A. Upadhyay , T. Tuckmantel , A. Pukhov , A. Caldwell

New particle acceleration schemes open up exciting opportunities, potentially providing more compact or higher-energy accelerators. The AWAKE experiment at CERN is currently taking data to establish the method of proton-driven plasma…

Accelerator Physics · Physics 2019-09-04 M. Wing

Initial simulations investigating using the RHIC-EIC proton beam as the drive beam in a plasma wakefield acceleration experiment are presented. The proton beam enters the plasma and undergoes self-modulation, forming a series of…

Plasma Physics · Physics 2019-07-03 James Chappell , Allen Caldwell , Matthew Wing

In this article, we briefly summarize the experiments performed during the first Run of the Advanced Wakefield Experiment, AWAKE, at CERN (European Organization for Nuclear Research). The final goal of AWAKE Run 1 (2013 - 2018) was to…

Accelerator Physics · Physics 2019-09-11 Edda Gschwendtner , Marlene Turner , the AWAKE Collaboration

The goal of the first phase of the AWAKE \cite{AWAKE1,AWAKE2} experiment at CERN is to measure the self-modulation \cite{SMI} of the $\sigma_z = 12\,\rm{cm}$ long SPS proton bunch into microbunches after traversing $10\,\rm{m}$ of plasma…

Accelerator Physics · Physics 2017-02-22 Marlene Turner , B. Biskup , S. Burger , E. Gschwendtner , S. Mazzoni , A. Petrenko

We give direct experimental evidence for the observation of the full transverse self-modulation of a relativistic proton bunch propagating through a dense plasma. The bunch exits the plasma with a density modulation resulting from radial…

Accelerator Physics · Physics 2019-04-03 E. Adli , A. Ahuja , O. Apsimon , R. Apsimon , A. -M. Bachmann , D. Barrientos , M. M. Barros , J. Batkiewicz , F. Batsch , J. Bauche , V. K. Berglyd Olsen , M. Bernardini , B. Biskup , A. Boccardi , T. Bogey , T. Bohl , C. Bracco , F. Braunmüller , S. Burger , G. Burt , S. Bustamante , B. Buttenschön , A. Caldwell , M. Cascella , J. Chappell , E. Chevallay , M. Chung , D. Cooke , H. Damerau , L. Deacon , L. H. Deubner , A. Dexter , S. Doebert , J. Farmer , V. N. Fedosseev , G. Fior , R. Fiorito , R. A. Fonseca , F. Friebel , L. Garolfi , S. Gessner , I. Gorgisyan , A. A. Gorn , E. Granados , O. Grulke , E. Gschwendtner , A. Guerrero , J. Hansen , A. Helm , J. R. Henderson , C. Hessler , W. Hoe , M. Hüther , M. Ibison , L. Jensen , S. Jolly , F. Keeble , S. -Y. Kim , F. Kraus , T. Lefevre , G. LeGodec , Y. Li , S. Liu , N. Lopes , K. V. Lotov , L. Maricalva Brun , M. Martyanov , S. Mazzoni , D. Medina Godoy , V. A. Minakov , J. Mitchell , J. C. Molendijk , R. Mompo , J. T. Moody , M. Moreira , P. Muggli , C. Mutin , E. Öz , E. Ozturk , C. Pasquino , A. Pardons , F. Pena Asmus , K. Pepitone , A. Perera , A. Petrenko , S. Pitman , G. Plyushchev , A. Pukhov , S. Rey , K. Rieger , H. Ruhl , J. S. Schmidt , I. A. Shalimova , E. Shaposhnikova , P. Sherwood , L. O. Silva , L. Soby , A. P. Sosedkin , R. Speroni , R. I. Spitsyn , P. V. Tuev , M. Turner , F. Velotti , L. Verra , V. A. Verzilov , J. Vieira , H. Vincke , C. P. Welsch , B. Williamson , M. Wing , B. Woolley , G. Xia

A train of short charged particle bunches can efficiently drive a strong plasma wakefield over a long propagation distance only if all bunches reside in focusing and decelerating phases of the wakefield. This is shown possible with…

Plasma Physics · Physics 2018-01-17 K. V. Lotov