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@ARTICLE{Gschwendtner:316961,
author = {Gschwendtner, E. and Adli, E. and Amorim, L. and Apsimon,
R. and Assmann, R. and Bachmann, A. M. and Batsch, F. and
Bauche, J. and Berglyd Olsen, V. K. and Bernardini, M. and
Bingham, R. and Biskup, B. and Bohl, T. and Bracco, C. and
Burrows, P. N. and Burt, G. and Buttenschon, B. and
Butterworth, A. and Caldwell, A. and Cascella, M. and
Chevallay, E. and Cipiccia, S. and Damerau, H. and Deacon,
L. and Dirksen, P. and Doebert, S. and Dorda, U. and Farmer,
J. and Fedosseev, V. and Feldbaumer, E. and Fiorito, R. and
Fonseca, R. and Friebel, F. and Gorn, A. A. and Grulke, O.
and Hessler, C. and Hofle, W. and Holloway, J. and Huther,
M. and Jaroszynski, D. and Jensen, L. and Jolly, S. and
Joulaei, A. and Kasim, M. and Keeble, F. and Lopes, N. and
Lotov, K. V. and Mandry, S. and Martorelli, R. and
Martyanov, M. and Mazzoni, S. and Mete, O. and Minakov, V.
A. and Mitchell, J. and Moody, J. and Muggli, P. and
Najmudin, Z. and Norreys, P. and Oz, E. and Pardons, A. and
Pepitone, K. and Petrenko, A. and Plyushchev, G. and Pukhov,
A. and Rieger, K. and Ruhl, H. and Salveter, F. and Savard,
N. and Seryi, A. and Shaposhnikova, E. and Sheng, Z. M. and
Sherwood, P. and Silva, L. and Soby, L. and Sosedkin, A. P.
and Spitsyn, R. I. and Trines, R. and Tuev, P. V. and
Turner, M. and Verzilov, V. and Vieira, J. and Vincke, H.
and Welsch, C. P. and Wing, M. and Xia, G. and Hansen, J.
and Li, Y. and Liu, S. and Schmidt, J. and Wei, Y. and
Zhang, H.},
title = {{AWAKE}, {T}he {A}dvanced {P}roton {D}riven {P}lasma
{W}akefield {A}cceleration {E}xperiment at {CERN}},
journal = {Nuclear instruments $\&$ methods in physics research / A},
volume = {829},
issn = {0168-9002},
address = {Amsterdam},
publisher = {North-Holland Publ. Co.},
reportid = {PUBDB-2017-00331, arXiv:1512.05498},
pages = {76 - 82},
year = {2016},
abstract = {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 first proton driven plasma wakefield
acceleration experiment. The AWAKE experiment will be
installed in the former CNGS facility and uses the 400 GeV/c
proton beam bunches from the SPS. The first experiments will
focus on the self-modulation instability of the long (rms
~12 cm) proton bunch in the plasma. These experiments are
planned for the end of 2016. Later, in 2017/2018, low energy
(~15 MeV) electrons will be externally injected into the
sample wakefields and be accelerated beyond 1 GeV. The main
goals of the experiment will be summarized. A summary of the
AWAKE design and construction status will be presented.},
keywords = {plasma: wake field (INSPIRE) / acceleration: wake field
(INSPIRE) / electron: acceleration (INSPIRE) / p: beam
(INSPIRE) / energy: low (INSPIRE) / AWAKE (INSPIRE) / CERN
Lab (INSPIRE) / stability (INSPIRE) / CERN SPS (INSPIRE) /
CNGS (INSPIRE) / beam loading (INSPIRE) / laser: beam
(INSPIRE) / modulation (INSPIRE) / proposed experiment
(INSPIRE) / EuCARD2 (INSPIRE)},
cin = {MPY},
ddc = {530},
cid = {I:(DE-H253)MPY-20120731},
pnm = {631 - Accelerator R $\&$ D (POF3-631)},
pid = {G:(DE-HGF)POF3-631},
experiment = {EXP:(DE-MLZ)NOSPEC-20140101},
typ = {PUB:(DE-HGF)29 / PUB:(DE-HGF)16},
eprint = {1512.05498},
howpublished = {arXiv:1512.05498},
archivePrefix = {arXiv},
SLACcitation = {$\%\%CITATION$ = $arXiv:1512.05498;\%\%$},
UT = {WOS:000379144100015},
doi = {10.1016/j.nima.2016.02.026},
url = {https://bib-pubdb1.desy.de/record/316961},
}