%0 Journal Article
%A Caldwell, Allen
%A Adli, E.
%A Amorim, L.
%A Apsimon, R.
%A Argyropoulos, T.
%A Assmann, R.
%A Bachmann, A.-M.
%A Batsch, F.
%A Bauche, J.
%A Berglyd Olsen, V. K.
%A Bernardini, M.
%A Bingham, R.
%A Biskup, B.
%A Bohl, T.
%A Bracco, C.
%A Burrows, P. N.
%A Burt, G.
%A Buttenschön, B.
%A Butterworth, A.
%A Cascella, M.
%A Chattopadhyay, S.
%A Chevallay, E.
%A Cipiccia, S.
%A Damerau, H.
%A Deacon, L.
%A Dirksen, P.
%A Doebert, S.
%A Dorda, Ulrich
%A Elsen, Eckhard
%A Farmer, J.
%A Fartoukh, S.
%A Fedosseev, V.
%A Feldbaumer, E.
%A Fiorito, R.
%A Fonseca, Ricardo
%A Friebel, F.
%A Geschonke, G.
%A Goddard, B.
%A Gorn, A. A.
%A Grulke, O.
%A Gschwendtner, E.
%A Hansen, J.
%A Hessler, C.
%A Hillenbrand, S.
%A Hofle, W.
%A Holloway, J.
%A Huang, C.
%A Hüther, M.
%A Jaroszynski, D.
%A Jensen, L.
%A Jolly, S.
%A Joulaei, A.
%A Kasim, M.
%A Keeble, F.
%A Kersevan, R.
%A Kumar, N.
%A Li, Y.
%A Liu, S.
%A Lopes, N.
%A Lotov, K. V.
%A Lu, W.
%A Machacek, J.
%A Mandry, S.
%A Martin, I.
%A Martorelli, R.
%A Martyanov, M.
%A Mazzoni, S.
%A Meddahi, M.
%A Merminga, L.
%A Mete, O.
%A Minakov, V. A.
%A Mitchell, J.
%A Moody, J.
%A Müller, A.-S.
%A Najmudin, Z.
%A Noakes, T. C. Q.
%A Norreys, P.
%A Osterhoff, J.
%A Öz, E.
%A Pardons, A.
%A Pepitone, K.
%A Petrenko, A.
%A Plyushchev, G.
%A Pozimski, J.
%A Pukhov, A.
%A Reimann, O.
%A Rieger, K.
%A Roesler, S.
%A Ruhl, H.
%A Rusnak, T.
%A Salveter, F.
%A Savard, N.
%A Schmidt, J.
%A von der Schmitt, H.
%A Seryi, A.
%A Shaposhnikova, E.
%A Sheng, Z. M.
%A Sherwood, P.
%A Silva, L.
%A Simon, F.
%A Soby, L.
%A Sosedkin, A. P.
%A Spitsyn, R. I.
%A Tajima, T.
%A Tarkeshian, R.
%A Timko, H.
%A Trines, R.
%A Tückmantel, T.
%A Tuev, P. V.
%A Turner, M.
%A Velotti, F.
%A Verzilov, V.
%A Vieira, J.
%A Vincke, H.
%A Wei, Y.
%A Welsch, C. P.
%A Wing, Matthew
%A Xia, G.
%A Yakimenko, V.
%A Zhang, H.
%A Zimmermann, F.
%T Path to AWAKE: Evolution of the concept
%J Nuclear instruments & methods in physics research / A
%V 829
%N arXiv:1511.09032
%@ 0168-9002
%C Amsterdam
%I North-Holland Publ. Co.
%M PUBDB-2016-06463
%M arXiv:1511.09032
%P 3 - 16
%D 2016
%Z (c) Published by Elsevier B.V.
%X This paper describes the conceptual steps in reaching the design of the AWAKE experiment currently under construction at CERN. We start with an introduction to plasma wakefield acceleration and the motivation for using proton drivers. We then describe the self-modulation instability – a key to an early realization of the concept. This is then followed by the historical development of the experimental design, where the critical issues that arose and their solutions are described. We conclude with the design of the experiment as it is being realized at CERN and some words on the future outlook. A summary of the AWAKE design and construction status as presented in this conference is given in Gschwendtner et al.
%B 2nd European Advanced Accelerator Concepts Workshop
%C 13 Sep 2015 - 19 Sep 2015, La Biodola, Isola d'Elba (Italy)
Y2 13 Sep 2015 - 19 Sep 2015
M2 La Biodola, Isola d'Elba, Italy
%F PUB:(DE-HGF)16
%9 Journal Article
%U <Go to ISI:>//WOS:000379144100002
%R 10.1016/j.nima.2015.12.050
%U https://bib-pubdb1.desy.de/record/316269