CERN Accelerating science

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1.
Positron Sources for Future High Energy Physics Colliders / Musumeci, P. (UCLA) ; Boffo, C. (Fermilab) ; Bulanov, S.S. (LBL, Berkeley) ; Chaikovska, I. (IJCLab, Orsay) ; Faus Golfe, A. (IJCLab, Orsay) ; Gessner, S. (SLAC) ; Grames, J. (Jefferson Lab) ; Hessami, R. (Stanford U.) ; Ivanyushenkov, Y. (Argonne, PHY) ; Lankford, A. (UC, Irvine) et al.
An unprecedented positron average current is required to fit the luminosity demands of future $e^+e^-$ high energy physics colliders. [...]
arXiv:2204.13245 ; FERMILAB-CONF-22-372-AD-TD.
- 26 p.
Fermilab Library Server - eConf - Fulltext - Fulltext
2.
Stripline Kickers for Injection Into PETRA IV / Loisch, Gregor (DESY) ; Agapov, Ilya (DESY) ; Antipov, Sergey (DESY) ; Jebramcik, Marc (CERN) ; Keil, Joachim (DESY) ; Obier, Frank (DESY)
PETRA IV is the planned ultralow-emittance upgrade of the PETRA III synchrotron light source at DESY, Hamburg. The current design includes an on-axis beam injection scheme using fast stripline kickers. [...]
2021 - 3 p. - Published in : 10.18429/JACoW-IPAC2021-WEPAB113 Fulltext: PDF;
In : 12th International Particle Accelerator Conference (IPAC 2021), Online, Br, 24 - 28 May 2021, pp.2863
3.
Characterization of Self-Modulated Electron Bunches in an Argon Plasma / Groß, Matthias (DESY, Zeuthen) ; Boonpornprasert, Prach (DESY, Zeuthen) ; Brinkmann, Reinhard (DESY) ; Chen, Ye (DESY, Zeuthen) ; Engel, Johannes (DESY, Zeuthen) ; Good, James (DESY, Zeuthen) ; Grüner, Florian (CFEL, Hamburg ; Hamburg U.) ; Huck, Holger (DESY, Zeuthen) ; Isaev, Igor (DESY, Zeuthen) ; Krasilnikov, Mikhail (DESY, Zeuthen) et al.
The self-modulation instability is fundamental for the plasma wakefield acceleration experiment of the AWAKE (Advanced Wakefield Experiment) collaboration at CERN where this effect is used to generate proton bunches for the resonant excitation of high acceleration fields. Utilizing the availability of flexible electron beam shaping together with excellent diagnostics including an RF deflector, a supporting experiment was set up at the electron accelerator PITZ (Photo Injector Test facility at DESY, Zeuthen site), given that the underlying physics is the same. [...]
2018 - 3 p. - Published in : (2018) , pp. TUPML046
- Published in : J. Phys.: Conf. Ser. 1067 (2018) 042012 Fulltext: PDF;
In : 9th International Particle Accelerator Conference, Vancouver, Canada, 29 Apr - 4 May 2018, pp.TUPML046
4.
High Gradient Pulsed Quadrupoles for Novel Accelerators and Space Charge Limited Beam Transport / Tenholt, Carmen (CERN) ; Loisch, Gregor (DESY, Zeuthen) ; Marchetti, Barbara (DESY) ; Stephan, Frank (DESY, Zeuthen)
Novel acceleration schemes like plasma wake-field based accelerators demand for high gradient focusing elements to match the Twiss parameters in the plasma to the transport lattice of the conventional accelerator beamlines, with typically much higher beta-functions. There are multiple candidates for achieving high gradient focusing fields, each one having certain drawbacks. [...]
2018 - 4 p. - Published in : (2018) , pp. WEPMF061
- Published in : J. Phys.: Conf. Ser. 1067 (2018) 082013 Fulltext: PDF;
In : 9th International Particle Accelerator Conference, Vancouver, Canada, 29 Apr - 4 May 2018, pp.WEPMF061
5.
Towards an Advanced Linear International Collider / ALEGRO Collaboration
This document provides detailed information on the status of Advanced and Novel Accelerators techniques and describes the steps that need to be envisaged for their implementation in future accelerators, in particular for high energy physics applications. [...]
arXiv:1901.10370.
- 2019 - 83.
Fulltext
6.
Observation of High Transformer Ratio Plasma Wakefield Acceleration / Loisch, Gregor (DESY, Zeuthen) ; Asova, Galina (DESY, Zeuthen ; Sofiya, Inst. Nucl. Res.) ; Boonpornprasert, Prach (DESY, Zeuthen) ; Brinkmann, Reinhard (DESY) ; Chen, Ye (DESY, Zeuthen) ; Engel, Johannes (DESY, Zeuthen) ; Good, James (DESY, Zeuthen) ; Gross, Matthias (DESY, Zeuthen) ; Grüner, Florian (U. Hamburg (main) ; CFEL, Hamburg) ; Huck, Holger (DESY, Zeuthen) et al.
Particle-beam-driven plasma wakefield acceleration (PWFA) enables various novel high-gradient techniques for powering future compact light-source and high-energy physics applications. Here, a driving particle bunch excites a wakefield response in a plasma medium, which may rapidly accelerate a trailing witness beam. [...]
2018 - 6 p. - Published in : Phys. Rev. Lett. 121 (2018) 064801 Fulltext: PDF;

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