CERN Accelerating science

CERN Document Server 找到 24 笔记录  1 - 10下一个最後  跳到记录: 检索需时 0.56 秒. 
1.
The AWAKE Run 2 programme and beyond / AWAKE Collaboration
Plasma wakefield acceleration is a promising technology to reduce the size of particle accelerators. Use of high energy protons to drive wakefields in plasma has been demonstrated during Run 1 of the AWAKE programme at CERN. [...]
arXiv:2206.06040.- 2022-08-12 - 21 p. - Published in : Symmetry 14 (2022) 1680 Fulltext: document - PDF; 2206.06040 - PDF;
2.
Experimental study of extended timescale dynamics of a plasma wakefield driven by a self-modulated proton bunch / AWAKE Collaboration
Plasma wakefield dynamics over timescales up to 800 ps, approximately 100 plasma periods, are studied experimentally at the Advanced Wakefield Experiment (AWAKE). The development of the longitudinal wakefield amplitude driven by a self-modulated proton bunch is measured using the external injection of witness electrons that sample the fields. [...]
arXiv:2010.05715.- 2021-01-06 - 13 p. - Published in : Phys. Rev. Accel. Beams 24 (2021) 011301 Fulltext: PDF; Fulltext from Publisher: PDF; Fulltext from publisher: PDF;
3.
Proton beam defocusing in AWAKE: comparison of simulations and measurements / AWAKE Collaboration
In 2017, AWAKE demonstrated the seeded self-modulation (SSM) of a 400 GeV proton beam from the Super Proton Synchrotron (SPS) at CERN. [...]
arXiv:2008.11392.
- 8 p.
Fulltext
4.
Measurement and application of electron stripping of ultrarelativistic $^{208}\textrm{Pb}^{81+}$ / Cooke, D.A. (University Coll. London) ; Bauche, J. (CERN) ; Cascella, M. (University Coll. London) ; Chappell, J. (University Coll. London) ; Alemany–Fernández, R. (CERN) ; Gorgisyan, I. (CERN) ; Gschwendtner, E. (CERN) ; Jolly, S. (University Coll. London) ; Kain, V. (CERN) ; Keeble, F. (University Coll. London) et al.
New measurements of the stripping cross-section for ultrarelativistic hydrogen-like lead ions passing through aluminium and silicon have been performed at the Advanced Wakefield experiment at CERN. Agreement with existing measurements and theory has been obtained. [...]
arXiv:2006.16160.- 2021-02-01 - 5 p. - Published in : Nucl. Instrum. Methods Phys. Res., A 988 (2021) 164902 Fulltext: PDF; Fulltext from publisher: PDF;
5.
Evolution of a plasma column measured through modulation of a high-energy proton beam / AWAKE Collaboration
Plasma wakefield acceleration is a method for accelerating particle beams using electromagnetic fields that are orders of magnitude larger than those found in conventional radio frequency cavities. [...]
arXiv:2006.09991.
- 22 p.
Fulltext
6.
Experimental Study of Wakefields Driven by a Self-Modulating Proton Bunch in Plasma / AWAKE Collaboration
We study experimentally the longitudinal and transverse wakefields driven by a highly relativistic proton bunch during self-modulation in plasma. We show that the wakefields' growth and amplitude increases with increasing seed amplitude as well as with the proton bunch charge in the plasma. [...]
arXiv:2005.05277.- 2020-08-05 - 8 p. - Published in : Phys. Rev. Accel. Beams 23 (2020) 081302 Fulltext: PDF; Fulltext from Publisher: PDF;
7.
Calibration of the AWAKE electron spectrometer with electrons derived from a partially stripped ion beam / Cooke, David (University Coll. London) ; Alemany-Fernández, Reyes (CERN) ; Bauche, Jeremie (CERN) ; Cascella, Michele (University Coll. London) ; Chappell, James (University Coll. London) ; Gorgisyan, Ishkhan (CERN) ; Gschwendtner, Edda (CERN) ; Jolly, Simon (University Coll. London) ; Kain, Verena (CERN) ; Keeble, Fearghus (University Coll. London) et al.
The electron spectrometer for the Advanced Wakefield (AWAKE) experiment at CERN has been tested using an electron beam derived from partially-stripped ions accelerated in the Super Proton Synchrotron (SPS). The remaining electrons are stripped by passage of the beam through a thin screen upstream from the spectrometer, and using knowledge of the ion beam charge and energy, models of the spectrometer response could be verified..
CERN-ACC-2019-203.- 2019 - 3 p. - Published in : 10.18429/JACoW-IPAC2019-WEPGW089 Fulltext from publisher: PDF;
In : 10th International Particle Accelerator Conference, Melbourne, Australia, 19 - 24 May 2019, pp.WEPGW089
8.
The electron accelerators for the AWAKE experiment at CERN - Baseline and future developments / Pepitone, K (CERN) ; Doebert, S (CERN) ; Apsimon, R (Lancaster U.) ; Bauche, J (CERN) ; Bernardini, M (CERN) ; Bracco, C (CERN) ; Burt, G (Lancaster U.) ; Chauchet, A (CERN) ; Chevallay, E (CERN) ; Chritin, N (CERN) et al.
The AWAKE collaboration prepares a proton driven plasma wakefield acceleration experiment using the SPS beam at CERN. A long proton bunch extracted from the SPS interacts with a high power laser and a 10 m long rubidium vapor plasma cell to create strong wakefields allowing sustained electron acceleration. [...]
2018 - 5 p. - Published in : Nucl. Instrum. Methods Phys. Res., A 909 (2018) 102-106 Fulltext: PDF;
In : 3rd European Advanced Accelerator Concepts Workshop, La Biodola, Isola d'Elba, Italy, 24 - 30 Sep 2017, pp.102-106
9.
A magnetic spectrometer to measure electron bunches accelerated at AWAKE / AWAKE Collaboration
A magnetic spectrometer has been developed for the AWAKE experiment at CERN in order to measure the energy distribution of bunches of electrons accelerated in wakefields generated by proton bunches in plasma. AWAKE is a proof-of-principle experiment for proton-driven plasma wakefield acceleration, using proton bunches from the SPS. [...]
arXiv:1902.05752.- 2019-10-01 - 6 p. - Published in : Nucl. Instrum. Methods Phys. Res., A 940 (2019) 103-108 Fulltext: PDF;
10.
Proton Driven Plasma Wakefield Acceleration in AWAKE / AWAKE Collaboration
In this article, we briefly summarize the experiments performed during the first Run of the Advanced Wakefield Experiment, AWAKE, at CERN (European Organization for Nuclear Research). The final goal of AWAKE Run 1 (2013 - 2018) was to demonstrate that 10-20 MeV electrons can be accelerated to GeV-energies in a plasma wakefield driven by a highly-relativistic self-modulated proton bunch. [...]
arXiv:1901.04171.- 2019-04-25 - 9 p. - Published in : Philos. Trans. R. Soc. Lond. A: 377 (2019) , pp. 20180418
- Published in : Philos. Trans. R. Soc. Lond. A: 378 (2019) , pp. 20190539 Fulltext: PDF;

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