CERN Accelerating science

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1.
Laser Wakefield Accelerators / Najmudin, Z. (JAI, UK ; Imperial Coll., London)
The one-dimensional wakefield generation equations are solved for increasing levels of non-linearity, to demonstrate how they contribute to the overall behaviour of a non-linear wakefield in a plasma. The effect of laser guiding is also studied as a way to increase the interaction length of a laser wakefield accelerator..
arXiv:1705.10534.- Geneva : CERN, 2016 - 10 p. - Published in : 10.5170/CERN-2016-001.109 Fulltext: arXiv:1705.10534 - PDF; 1418884_109-118 - PDF;
In : CAS - CERN Accelerator School: Plasma Wake Acceleration, pp.109-118
2.
Case Studies on Plasma Wakefield Accelerator Design / Osterhoff, J. (DESY) ; Najmudin, Z. (JAI, UK ; Imperial Coll., London) ; Faure, J. (Palaiseau, Lab. Opt. Appl.)
The field of plasma-based particle accelerators has seen tremendous progress over the past decade and experienced significant growth in the number of activities. During this process, the involved scientific community has expanded from traditional university-based research and is now encompassing many large research laboratories worldwide, such as BNL, CERN, DESY, KEK, LBNL and SLAC. [...]
arXiv:1705.11094.- Geneva : CERN, 2016 - 8 p. - Published in : (2016) , pp. 301-308
Fulltext: arXiv:1705.11094 - PDF; 1418884_301-308 - PDF;
In : CAS - CERN Accelerator School: Plasma Wake Acceleration, pp.301-308
3.
Non-linear plasma oscillations in one-dimensional flux / Amatuni, A T ; Magomedov, M R ; Elbakian, S S
EFI-307-32-78-[EREVAN].
- 1978. - 14 p.
Fulltext - CERN library copies
4.
An Overview of Recent Progress in Laser Wakefield Acceleration Experiments / Mangles, S.P.D. (JAI, UK ; Imperial Coll., London)
The goal of this paper is to examine experimental progress in laser wakefield acceleration over the past decade (2004–2014), and to use trends in the data tounderst and some of the important physical processes. By examining a set of over 50 experiments, various trends concerning the relationship between plasma density, accelerator length, laser power and the final electron beam energy are revealed. [...]
arXiv:1705.10588.- Geneva : CERN, 2016 - 12 p. Preprint: PDF; Published version from CERN: PDF;
In : CAS - CERN Accelerator School: Plasma Wake Acceleration, pp.289-300
5.
Proton-driven plasma wakefield acceleration: a path to the future of high-energy particle physics / AWAKE Collaboration
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. [...]
arXiv:1401.4823.- 2014 - 12 p. - Published in : Plasma Phys. Control. Fusion 56 (2014) 084013 Fulltext: PDF; External link: Preprint
In : Laser and Plasma Accelerator Workshop 2013, Goa, India, 1 - 6 Sep 2013, pp.084013
6.
Measurements of magnetic fields generated in underdense plasmas by intense lasers / Najmudin, Z ; Walton, B R ; Mangles, S P D ; Dangor, A E ; Fritzler, S ; Malka, V ; Faure, J ; Tatarakis, M ; Krushelnick, K
2006 - Published in : AIP Conf. Proc.: 827 (2006) , pp. 53-64 External link: Published version from AIP
In : 3rd International Conference on Superstrong Fields in Plasmas, Varenna, Italy, 19 - 24 Sep 2005, pp.53-64
7.
Multidimensional Plasma Wake Excitation in the Non-linear Blowout Regime / Vieira, J. (IST, Lisbon (main) ; Lisbon U.) ; Fonseca, R.A. (IST, Lisbon (main) ; Lisbon U. ; ISCTE, Lisbon) ; Silva, L.O. (IST, Lisbon (main) ; Lisbon U.)
Plasma accelerators can sustain very high acceleration gradients. They are promising candidates for future generations of particle accelerators for sev- eral scientific, medical and technological applications. [...]
arXiv:1607.03514.- Geneva : CERN, 2016 - 29 p. - Published in : 10.5170/CERN-2016-001.79 Fulltext: 1418884_79-107 - PDF; 1607.03514 - PDF; Preprint: PDF; External link: Preprint
In : CAS - CERN Accelerator School: Plasma Wake Acceleration, pp.79-107
8.
Critical properties of a one-dimensional non-linear lattice and hadron physics / Antoniou, Nikos G ; Karanikas, A I ; Vlassopoulos, S
1984. - 21 p.
CERN library copies
9.
A non-linear theory for the bubble regime of plasma wake fields in tailored plasma channels / Thomas, Johannes (Heinrich Heine U., Dusseldorf) ; Kostyukov, Igor Yu (Nizhnii Novgorod, Radiophys. Res. Inst. ; Nizhnii Novgorod, IAP) ; Pronold, Jari (Heinrich Heine U., Dusseldorf) ; Golovanov, Anton ; Pukhov, Alexander (Heinrich Heine U., Dusseldorf)
We introduce a first full analytical bubble and blow-out model for a radially inhomogeneous plasma in a quasi-static approximation. For both cases we calculate the accelerating and the focusing fields. [...]
arXiv:1510.09012.- 2016 - 11 p. - Published in : Phys. Plasmas 23 (2016) 053108 External link: Preprint
10.
Laser Wakefield Acceleration of Electrons at Ecole Polytechnique / Amiranoff, F ; Baton, S D ; Bernard, D ; Cros, B ; Descamps, D ; Dorchies, F ; Jacquet, F ; Malka, V ; Marquès, J ; Matthieussent, G et al.
The acceleration of electrons injected in a plasma wave generated by the laser wakefield mechanism has been observed. A maximum energy gain of 1.6 eV has been measured and the maximum longitudinal electric field is estimated to 1.5~GV/m. [...]
LPNHE-98-04.- 1999 Access to fulltext document: PDF;
In : 8th Workshop on Advanced Accelerator Concepts, Baltimore, MD, USA, 6 - 11 Jul 1998, pp.303-314

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