CERN Accelerating science

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1.
Proton beam jitter estimate for AWAKE Run2c / Velotti, Francesco Maria (CERN) ; Bencini, Vittorio (John Adams Institute for Accelerator Science (GB))
Summary The aim of AWAKE Run 2 is to demonstrate the possibility of scaling the experiment for high energy physics, i.e. [...]
CERN-ACC-NOTE-2024-0017.
- 2024.
2.
Design of the new 18 MeV electron injection line for AWAKE Run2c / Bencini, Vittorio (CERN ; JAI, UK) ; Velotti, Francesco (CERN)
The Advanced Wakefield Experiment (AWAKE) has demonstrated during its first run (Run1, concluded in 2018) the capability of accelerating electrons up to the energy of 2 GeV using proton driven plasma wakefield acceleration. AWAKE Run 2 has started and during the third phase of the program, Run 2c, which aims to demonstrate stable accelerating gradients of 0.5-1 GV/m and emittance preservation of the electron bunches during acceleration, the layout of the experiment will be modified to accommodate a second plasma cell. [...]
2023 - 4 p. - Published in : JACoW IPAC 2023 (2023) MOPA102 Fulltext: PDF;
In : 14th International Particle Accelerator Conference (IPAC 2023), Venice, Italy, 7 - 12 May 2023, pp.MOPA102
3.
Design of the Proton and Electron Transfer Lines for AWAKE Run 2c / Ramjiawan, Rebecca (JAI, UK ; CERN) ; Döbert, Steffen (CERN) ; Farmer, John (Munich, Max Planck Inst. ; CERN) ; Gschwendtner, Edda (CERN) ; Muggli, Patric (Munich, Max Planck Inst. ; CERN) ; Velotti, Francesco (CERN) ; Verra, Livio (CERN)
The AWAKE Run 1 experiment achieved electron acceleration to 2 GeV using plasma wakefield acceleration driven by 400 GeV, self-modulated proton bunches from the CERN SPS. The Run 2c phase of the experiment aims to build on these results by demonstrating acceleration to ~10 GeV while preserving the quality of the accelerated electron beam. [...]
Geneva : JACoW, 2021 - 4 p. - Published in : JACoW IPAC 2021 (2021) 778-781 Fulltext: PDF;
In : 12th International Particle Accelerator Conference (IPAC 2021), Online, 24 - 28 May 2021, pp.778-781
4.
Design of the proton and electron transfer lines for AWAKE Run 2c / Ramjiawan, R (CERN) ; Bencini, V (JAI, UK ; CERN) ; Burrows, P N (JAI, UK) ; Velotti, F M (CERN)
The Advanced Wakefield (AWAKE) Run 1 experiment, which concluded in 2018, achieved electron acceleration to 2GeV via plasma wakefield acceleration driven by 400GeV, self-modulated proton bunches extracted from the CERN SPS. The Run 2c phase of the experiment aims to advance these results by demonstrating acceleration up to about 10GeV while preserving the quality of the accelerated electron beam. [...]
2023 - 7 p. - Published in : Nucl. Instrum. Methods Phys. Res., A 1049 (2023) 168094 Fulltext: PDF;
5.
Control of Proton Beam Self-Modulation for AWAKE via Initial Beam Parameters / Wyler, Samuel Stefan
Plasma wakefield acceleration is a promising concept in the development of a new type of electron accelerators for high-energy physics experiments [...]
CERN-THESIS-2022-107 - 100 p.

6.
Run 2 of the Advanced Plasma Wakefield Experiment (AWAKE) at CERN / Zevi Della Porta, Giovanni (CERN) /AWAKE Collaboration
After successful completion of Run 1 of the Advanced Plasma Wakefield Experiment (AWAKE) at CERN, the experiment started Run 2 in 2021. The goals of AWAKE Run 2 are to accelerate electrons in proton-beam-driven plasma wakefields to high energies with gradients of up to 1 GV/m while preserving the electron beam normalized emittance at the 10 $\mu$m level, and to demonstrate the acceleration of electrons in scalable plasma sources to 50-100 GeV. [...]
2022 - 6 p. - Published in : JACoW LINAC 2022 (2022) 625-630 Fulltext: PDF;
In : 31st Linear Accelerator Conference (LINAC22), Liverpool, UK, 28 Aug - 2 Sep 2022, pp.625-630
7.
Techniques to seed the self-modulation instability of a long proton bunch in plasma / Verra, Livio (CERN) ; Bergamaschi, Michele (Munich, Max Planck Inst.) ; Zevi Della Porta, Giovanni (CERN ; Munich, Max Planck Inst.) ; Gschwendtner, Edda (CERN) ; Muggli, Patric (Munich, Max Planck Inst.)
The Advanced Wakefield Experiment (AWAKE) at CERN relies on the seeded Self-Modulation (SM) of a long relativistic proton bunch in plasma to accelerate an externally injected MeV witness electron bunch to GeV energies. During AWAKE Run 1 (2016-2018) and Run 2a (2021-2022), two seeding methods were investigated experimentally: relativistic ionization front seeding and electron bunch seeding. [...]
arXiv:2305.00431.- 2023-09-26 - 4 p. - Published in : JACoW IPAC 2023 (2023) TUPA095 Fulltext: 2305.00431 - PDF; document - PDF; Publication - PDF;
In : 14th International Particle Accelerator Conference (IPAC 2023), Venice, Italy, 7 - 12 May 2023, pp.TUPA095
8.
Awake Run 2 at CERN / Gschwendtner, Edda (CERN)
The AWAKE Run 2 experiment, starting in 2021 at CERN, aims to achieve high-charge bunches of electrons accelerated to high energy (~10 GeV) while maintaining beam quality. AWAKE Run 2 also aims to show that the process is scalable so that, by the end of the run, the AWAKE-scheme technology could be used for first particle physics applications. [...]
Geneva : JACoW, 2021 - 4 p. - Published in : JACoW IPAC 2021 (2021) 1757-1760 Fulltext: PDF;
In : 12th International Particle Accelerator Conference (IPAC 2021), Online, 24 - 28 May 2021, pp.1757-1760
9.
Design of the AWAKE Run 2c transfer lines using numerical optimizers / Ramjiawan, Rebecca (CERN) ; Bencini, Vittorio (CERN) ; Doebert, Steffen (CERN) ; Farmer, John (CERN) ; Gschwendtner, Edda (CERN) ; Velotti, Francesco (CERN) ; Verra, Livio (CERN) ; Della Porta, Giovanni Zevi (CERN) ; Burrows, P. N. (JAI, UK)
The Advanced Wakefield (AWAKE) Experiment is a proof-of-principle experiment demonstrating the acceleration of electron beams via proton-driven plasma wakefield acceleration. [...]
arXiv:2203.01605.
- 15 p.
Fulltext
10.
Electron beam trajectory reconstruction for transfer lines / Ramjiawan, Rebecca Louise (CERN) ; Velotti, Francesco Maria (CERN)
The goal of the AWAKE Run 2a experiment is to study the electron-seeding of the self-modulation of a proton bunch propagating in plasma. [...]
CERN-ACC-NOTE-2021-0025.
- 2021. - 11 p.
Full text

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