CERN Accelerating science

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1.
Hosing Instability of the Drive Electron Beam in the E157 Plasma-Wakefield Acceleration Experiment at the Stanford Linear Accelerator / Blue, Brent Edward
SLAC-R-783. - Stanford, CA : SLAC, 2000. - 84 p.
Fulltext from SLAC
2.
Test of the Electron Hose Instability in the E157 Experiment / Joshi, C ; Blue, B E ; Clayton, C E ; Dodd, E S ; Marsh, K A ; Mori, W B ; Wang, S ; Assmann, R W ; Decker, Franz Josef ; Hogan, M J et al.
Geneva : CERN, 2001 IEEE Published version, local copy: PDF;
In : 19th IEEE Particle Accelerator Conference, Chicago, IL, USA, 18 - 22 Jun 2001, pp.e-proc. 4002
3.
E-157 : A 1.4 Meter-long Plasma Wakefield Acceleration Experiment Using A 30gev Electron Beam From The Stanford Linear Accelerator Center Linac / Hogan, M J
SLAC-PUB-8352.
- 2000.
Fulltext from SLAC
4.
E-157 : A Plasma wakefield acceleration experiment / Muggli, P ; Hogan, M J ; Clayton, C E ; Wang, S ; Siemann, R H ; Blue, B E ; Raimondi, Pantaleo ; Iverson, R H ; Walz, D ; Assmann, R W et al.
SLAC-PUB-8656.- Stanford, CA : SLAC, 2000 - 6 p. External links: Published version from SLAC; Access to fulltext document
In : 20th International Linear Accelerator Conference, Monterey, CA, USA, 21 - 25 Aug 2000, pp.e-proc. TH202
5.
Beamline Design for Plasma-Wakefield Acceleration Experiments at MAX IV / Svensson, Jonas Björklund (Lund U.) ; Ekerfelt, Henrik (Lund U.) ; Lundh, Olle (Lund U.) ; Mansten, Erik (Lund U., MAX-lab) ; Andersson, Joel (Lund U., MAX-lab) ; Kotur, Marija (Lund U., MAX-lab) ; Lindau, Filip (Lund U., MAX-lab) ; Thorin, Sara (Lund U., MAX-lab) ; Charles, Tessa K (CERN ; Melbourne U.)
The MAX IV Laboratory is a synchrotron radiation user facility located just outside the city of Lund, Sweden. The facility is made up of two storage rings, at 3 GeV and 1.5 GeV, respectively, and a linear accelerator, serving as a full-energy injector for the rings as well as a driver for the Short-Pulse Facility (SPF) located downstream of the extraction point to the 3 GeV ring. [...]
2019 - 4 p. - Published in : 10.1109/AAC.2018.8659401
In : 18th Advanced Accelerator Concepts Workshop, Breckenridge, CO, US, 12 - 17 Aug 2018, pp.8659401
6.
Proton Electron Accelerator at CERN / Tarkeshian, Roxana (Munich, Max Planck Inst.) /AWAKE
AWAKE is a proton driven plasma-wakefield acceleration at CERN*, that uses long proton bunches ~ 400 ps from the SPS. In a dense plasma, a long proton bunch is subject toμbunching at plasma period due to the self-modulation instability, SMI** [...]
2014 - 3 p. - Published in : , pp. TUPME069 Fulltext: PDF; External link: Published version from JACoW
In : 5th International Particle Accelerator Conference, Dresden, Germany, 15 - 20 Jun 2014, pp.1519
7.
Instability of Long Driving Beams in Plasma Wakefield Accelerators / Lotov, K V
1998 External links: Abstract from JACoW; Published version from JACoW
In : 6th European Particle Accelerator Conference, Stockholm, Sweden, 22 - 26 Jun 1998, pp.e-proc. 806
8.
Status of the Plasma Wakefield Acceleration Experiment at the Stanford Linear Accelerator Center / Muggli, P ; Katsouleas, T C ; Lee, S ; Assmann, R W ; Decker, Franz Josef ; Hogan, M J ; Iverson, R H ; O'Connell, C ; Raimondi, Pantaleo ; Siemann, R H et al.
Geneva : CERN, 2001 IEEE Published version, local copy: PDF;
In : 19th IEEE Particle Accelerator Conference, Chicago, IL, USA, 18 - 22 Jun 2001, pp.e-proc. 122
9.
Quasi-stable injection channels in a wakefield accelerator / Wiltshire-Turkay, Mara (Heinrich Heine U., Dusseldorf) ; Farmer, John P (Heinrich Heine U., Dusseldorf) ; Pukhov, Alexander (Heinrich Heine U., Dusseldorf)
Particle-driven plasma-wakefield acceleration is a promising alternative to conventional electron acceleration techniques, potentially allowing electron acceleration to energies orders of magnitude higher than can currently be achieved. In this work we investigate the dependence of the energy gain on the position at which electrons are injected into the wake. [...]
arXiv:1601.06025.- 2016 - 4 p. - Published in : Phys. Plasmas 23 (2016) 053112 External link: Preprint
10.
Betatron radiation and emittance growth in plasma wakefield accelerators / San Miguel Claveria, P (Palaiseau, Lab. Opt. Appl.) ; Adli, E (Oslo U.) ; Amorim, L D (Stony Brook U.) ; An, W (UCLA) ; Clayton, C E (UCLA) ; Corde, S (Palaiseau, Lab. Opt. Appl.) ; Gessner, S (CERN) ; Hogan, M J (SLAC) ; Joshi, C (UCLA) ; Kononenko, O (Palaiseau, Lab. Opt. Appl.) et al.
Beam-driven plasma wakefield acceleration (PWFA) has demonstrated significant progress during the past two decades of research. The new Facility for Advanced Accelerator Experimental Tests (FACET) II, currently under construction, will provide 10 GeV electron beams with unprecedented parameters for the next generation of PWFA experiments. [...]
2019 - 9 p. - Published in : Philos. Trans. R. Soc. Lond. A 377 (2019) 20180173 Fulltext from publisher: PDF;
In : Directions in particle beam-driven plasma wakefield acceleration : Theo Murphy meeting, Newport Pagnell, Buckinghamshire, UK, 4 - 5 Jun 2019, pp.20180173

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