CERN Accelerating science

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1.
Injection of a LWFA Electron Bunch in a PWFA Driven by a Self-modulated-proton-bunch / Muggli, Patric (Munich, Max Planck Inst.) ; Amorim, Ligia (Lisbon, IST) ; Karsch, Stefan (Garching, Max Planck Inst.) ; Lopes, Nelson (Lisbon, IST) ; Vieira, Jorge (Lisbon, IST)
The AWAKE experiment recently approved at CERN will study the acceleration of an externally injected electron bunch in a plasma wakefield accelerator (PWFA) driven by a self-modulated proton bunch. We study the possibility of injecting a bunch created by a laser-driven plasma wakefield accelerator (LWFA). [...]
2014 - 3 p. - Published in : 10.18429/JACoW-IPAC2014-TUPME048 Fulltext: PDF; External link: Full-text at JACoW Server
In : 5th International Particle Accelerator Conference, Dresden, Germany, 15 - 20 Jun 2014, pp.TUPME048
2.
Measuring the Self-modulation Instability of Electron and Positron Bunches in Plasmas / Muggli, Patric (Garching, Max Planck Inst. Plasmaphys.) ; Adli, Erik (Oslo U.) ; Allen, James (SLAC) ; Amorim, Ligia (Lisbon, IST) ; Andonian, Gerard (UCLA) ; Gessner, Spencer (SLAC) ; Green, Selina (SLAC) ; Hogan, Mark (SLAC) ; Joshi, Chan (UCLA) ; Litos, Michael (SLAC) et al.
The self-modulation instability (SMI) can be used to transform a long, charged particle bunch into a train of periodically spaced shorter bunches. The SMI occurs in a plasma when the plasma wake period is much shorter than the bunch length. [...]
2015 - 3 p. - Published in : (2015) , pp. WEPWA008 Published version from JACoW: PDF; External link: JACOW
In : 6th International Particle Accelerator Conference, Richmond, VA, USA, 3 - 8 May 2015, pp.WEPWA008
3.
Loading of Wakefields in a Plasma Accelerator Section Driven by a Self-Modulated Proton Beam / Berglyd Olsen, Veronica (U. Oslo (main)) ; Adli, Erik (U. Oslo (main)) ; Muggli, Patric (Munich, Max Planck Inst. ; CERN) ; Vieira, Jorge (Lisbon, IST)
Using parameters from the AWAKE project and particle-in-cell simulations we investigate beam loading of a plasma wake driven by a self-modulated proton beam. Addressing the case of injection of an electron witness bunch after the drive beam has already experienced self-modulation in a previous plasma, we optimise witness bunch parameters of size, charge and injection phase to maximise energy gain and minimise relative energy spread and emittance of the accelerated bunch..
2017 - 3 p. - Published in : 10.18429/JACoW-NAPAC2016-TUA4CO03 Fulltext: PDF;
In : 2016 North American Particle Accelerator Conference, Chicago, IL, USA, 9 - 14 Oct 2016, pp.TUA4CO03
4.
Physics of the AWAKE Project / Muggli, Patric (Munich, Max Planck Inst.) ; Öz, Erdem (Munich, Max Planck Inst.) ; Tarkeshian, Roxana (Munich, Max Planck Inst.) ; Bracco, Chiara (CERN) ; Gschwendtner, Edda (CERN) ; Pardons, Ans (CERN) ; Caldwell, Allen (Garching, Max Planck Inst. Plasmaphys.) ; Reimann, Olaf (Garching, Max Planck Inst. Plasmaphys.) ; Lotov, Konstantin (Novosibirsk, IYF) ; Pukhov, Alexander (Heinrich Heine U., Dusseldorf) et al.
The goal of the AWKAKE collaboration is the study of plasma wakefields driven by proton (p⁺) bunches through experiments, simulations and theory. Proton bunches are interesting wakefield drivers because they can be ultra-relativistic (TeVs/p⁺) and carry large amounts of energy (>kJ). [...]
2013 - 3 p. - Published in : (2013) , pp. TUPEA008 Fulltext: PDF; External link: Published version from JACoW
In : 4th International Particle Accelerator Conference, Shanghai, China, 12 - 17 May 2013, pp.1179
5.
Effect of Proton Bunch Parameter Variation on AWAKE / Savard, Nicolas (U. Victoria (main)) ; Muggli, Patric (Munich, Max Planck Inst.) ; Vieira, Jorge (Lisbon, IST)
In AWAKE, long proton bunches propagate through a plasma, generating wakefields through the self-modulation instability (SMI). The phase velocity of these wakefields changes during the first 4 m of propagation and growth of the SMI, after which it stabilizes at the proton bunch velocity. [...]
2017 - 3 p. - Published in : 10.18429/JACoW-NAPAC2016-WEPOA01 Fulltext: PDF;
In : 2016 North American Particle Accelerator Conference, Chicago, IL, USA, 9 - 14 Oct 2016, pp.WEPOA01
6.
Comparison of Fourier Signal and Error Analysis Techniques for Identifying the Self-Modulation Frequency of a Proton Bunch / Gessner, Spencer (CERN)
The AWAKE experiment uses an ultra-high energy proton beam to create large amplitude wakefields for accelerating electrons in plasma. The proton beam is much longer than the plasma wavelength, and must be formed into small, sub- wavelength sized beamlets before it can effectively drive the wake. [...]
2018 - 2 p. - Published in : 10.18429/JACoW-IPAC2018-TUPML049 Fulltext: PDF;
In : 9th International Particle Accelerator Conference, Vancouver, Canada, 29 Apr - 4 May 2018, pp.TUPML049
7.
EARLI: design of a laser wakefield accelerator for AWAKE / Minenna, D F G (IRFU, Saclay) ; Ballage, C (LPGP, Orsay) ; Bencini, V (CERN) ; Bethuys, S (Thales Alenia Space France, Cannes La Bocca) ; Cros, B (LPGP, Orsay) ; Dickson, L (LPGP, Orsay) ; Doebert, S (CERN) ; Farmer, J (Munich, Max Planck Inst.) ; Gschwendtner, E (CERN) ; Jeandet, A (Thales Alenia Space France, Cannes La Bocca) et al.
Following the successful Run 1 experiment, AWAKE has developed a program for Run2 that requires designing and implementing a compact electron source (150 MeV, >= 100 pC) for external injection. The baseline design uses a S- and X-band RF photo-injector gun system. [...]
2023 - 4 p. - Published in : JACoW IPAC 2023 (2023) TUPA089 Fulltext: PDF;
In : 14th International Particle Accelerator Conference (IPAC 2023), Venice, Italy, 7 - 12 May 2023, pp.TUPA089
8.
A proposed demonstration of an experiment of proton-driven plasma wakefield acceleration based on CERN SPS / Xia, G (Munich, Max Planck Inst.) ; Assmann, R (CERN) ; Fonseca, R A (IST, Lisbon (main)) ; Huang, C (Los Alamos) ; Mori, W (UCLA, Los Angeles (main)) ; Silva, L O (IST, Lisbon (main)) ; Vieira, J (IST, Lisbon (main)) ; Zimmermann, F (CERN) ; Muggli, P (Munich, Max Planck Inst.) /PPWFA
The proton bunch-driven plasma wakefield acceleration (PWFA) has been proposed as an approach to accelerate an electron beam to the TeV energy regime in a single plasma section. An experimental program has been recently proposed to demonstrate the capability of proton-driven PWFA by using existing proton beams from the European Organization for Nuclear Research (CERN) accelerator complex. [...]
2012 - 7 p. - Published in : J. Plasma Phys. 78 (2012) 347-353
9.
Status and Prospects for the AWAKE Experiment / Turner, Marlene (CERN) /AWAKE Collaboration
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 drive wakefields in a \SI{10}{m} long rubidium plasma with an electron density of $10^{14}-10^{15}$cm$^{-3}$. [...]
arXiv:1809.01813; CERN-ACC-2018-183.- 2018-10-03 - 7 p. - Published in : (2018) , pp. TUXGBE1 Fulltext: tuxgbe1 - PDF; arXiv:1809.01813 - PDF; fulltext1691458 - PDF;
In : 9th International Particle Accelerator Conference, Vancouver, Canada, 29 Apr - 4 May 2018, pp.TUXGBE1
10.
The AWAKE Proton-driven Plasma Wakefield Experiment at CERN / Muggli, Patric (Garching, Max Planck Inst. Plasmaphys.)
The AWAKE experiment at CERN aims at studying plasma wakefield generation and acceleration driven by proton bunches. The first experiments will focus on the self-modulation instability of the long (~12cm, rms) proton bunch in the plasma. [...]
2015 - 4 p. - Published in : (2015) , pp. WEPWA007 Published version from JACoW: PDF; External link: JACOW
In : 6th International Particle Accelerator Conference, Richmond, VA, USA, 3 - 8 May 2015, pp.WEPWA007

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