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CERN Document Server Encontrados 25 registros  1 - 10siguientefinal  ir al registro: La búsqueda tardó 0.61 segundos. 
1.
Laboratory realization of relativistic pair-plasma beams / Arrowsmith, C.D. (Oxford U.) ; Simon, P. (CERN ; Darmstadt, GSI) ; Bilbao, P.J. (Lisbon, IST) ; Bott, A.F. A. (Oxford U.) ; Burger, S. (CERN) ; Chen, H. (LLNL, Livermore) ; Cruz, F.D. (Lisbon, IST) ; Davenne, T. (Rutherford) ; Efthymiopoulos, I. (CERN) ; Froula, D.H. (Rochester U.) et al.
Relativistic electron-positron plasmas are ubiquitous in extreme astrophysical environments such as black holes and neutron star magnetospheres, where accretion-powered jets and pulsar winds are expected to be enriched with such pair plasmas. Their behaviour is quite different from typical electron-ion plasmas due to the matter-antimatter symmetry of the charged components and their role in the dynamics of such compact objects is believed to be fundamental. [...]
arXiv:2312.05244.- 2024-06-12 - 14 p. - Published in : Nature Commun. 15 (2024) 5029 Fulltext: 2312.05244 - PDF; document - PDF;
2.
Novel Materials and Concepts for Next-Generation High Power Target Applications / Ammigan, K. (Fermilab) ; Bidhar, S. (Fermilab) ; Pellemoine, F. (Fermilab) ; Pronskikh, V. (Fermilab) ; Pushka, D. (Fermilab) ; Yonehara, K. (Fermilab) ; Zwaska, R. (Fermilab) ; Couet, A. (Wisconsin U., Madison) ; Moorehead, M. (Wisconsin U., Madison) ; Ishida, T. (KEK, Tsukuba) et al.
Novel beam-intercepting materials and targetry concepts are essential to improve the performance, reliability and operation lifetimes of next generation multi-megawatt (multi-MW) accelerator target facilities. [...]
FERMILAB-CONF-22-139-AD ; arXiv:2203.08357.
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Fermilab Library Server - Fulltext - Fulltext
3.
Generating ultra-dense pair beams using 400 GeV/c protons / Arrowsmith, C.D. (Oxford U.) ; Shukla, N. (CINECA) ; Charitonidis, N. (CERN) ; Boni, R. (Rochester U.) ; Chen, H. (LLNL, Livermore) ; Davenne, T. (Rutherford) ; Dyson, A. (Oxford U.) ; Froula, D.H. (Rochester U.) ; Gudmundsson, J.T. (Iceland U. ; Royal Inst. Tech., Stockholm) ; Huffman, B.T. (Oxford U.) et al.
A previously unexplored experimental scheme is presented for generating low-divergence, ultra-dense, relativistic, electron-positron beams using 400 GeV/c protons available at facilities such as HiRadMat and AWAKE at CERN. Preliminary Monte-Carlo and Particle-in-cell simulations demonstrate the possibility of generating beams containing $10^{13}-10^{14}$ electron-positron pairs at sufficiently high densities to drive collisionless beam-plasma instabilities, which are expected to play an important role in magnetic field generation and the related radiation signatures of relativistic astrophysical phenomena. [...]
arXiv:2011.04398.- 2021-05-11 - 9 p. - Published in : Phys. Rev. Res.: 3 (2021) , no. 2, pp. 023103 Fulltext: PDF; Fulltext from publisher: PDF;
4.
Thermal shock experiment of beryllium exposed to intense high energy proton beam pulses / Ammigan, K (Fermilab) ; Bidhar, S (Fermilab) ; Hurh, P (Fermilab) ; Zwaska, R (Fermilab) ; Butcher, M (CERN) ; Calviani, M (CERN) ; Guinchard, M (CERN) ; Losito, R (CERN) ; Kuksenko, V (Oxford U.) ; Roberts, S (Oxford U.) et al.
Beryllium is a material extensively used in various particle accelerator beam lines and target facilities, as beam windows and, to a lesser extent, as secondary particle production targets. With increasing beam intensities of future multimegawatt accelerator facilities, these components will have to withstand even greater thermal and mechanical loads during operation. [...]
FERMILAB-PUB-18-670-AD.- 2019 - 14 p. - Published in : Phys. Rev. Accel. Beams 22 (2019) 044501 Fulltext: PDF; Fulltext from Publisher: PDF;
5.
Observed proton beam induced disruption of a tungsten powder sample at CERN / Davenne, T (Rutherford) ; Loveridge, P (Rutherford) ; Bingham, R (Rutherford ; Strathclyde U.) ; Wark, J (University Coll. London) ; Back, J  J (Warwick U.) ; Caretta, O (Rutherford) ; Densham, C (Rutherford) ; O'Dell, J (Rutherford) ; Wilcox, D (Rutherford) ; Fitton, M (Rutherford)
Fluidized tungsten powder has been proposed as a potential target technology for particle accelerator applications with very high power highly focused pulsed beams. This has motivated a series of experiments carried out at the HiRadMat facility at CERN to study the response of a tungsten powder sample to an impinging high energy proton beam pulse. [...]
2018 - 14 p. - Published in : Phys. Rev. Accel. Beams 21 (2018) 073002 Fulltext: PDF;
6.
Proton beam induced dynamics of tungsten granules / Caretta, O (Rutherford) ; Loveridge, P (Rutherford) ; O'Dell, J (Rutherford) ; Davenne, T (Rutherford) ; Fitton, M (Rutherford) ; Atherton, A (Rutherford) ; Densham, C (Rutherford) ; Charitonidis, N (CERN) ; Efthymiopoulos, I (CERN) ; Fabich, A (CERN) et al.
This paper reports the results from single-pulse experiments of a 440  GeV/$c$ proton beam interacting with granular tungsten samples in both vacuum and helium environments. Remote high-speed photography and laser Doppler vibrometry were used to observe the effect of the beam on the sample grains. [...]
2018 - 15 p. - Published in : Phys. Rev. Accel. Beams 21 (2018) 033401 Fulltext: PDF;
7.
The DUNE Far Detector Interim Design Report, Volume 3: Dual-Phase Module / DUNE Collaboration
The DUNE IDR describes the proposed physics program and technical designs of the DUNE far detector modules in preparation for the full TDR to be published in 2019. [...]
arXiv:1807.10340 ; Fermilab-Design-2018-04 ; FERMILAB-DESIGN-2018-04.
- 2018 - 280.
Fermilab News article - Fermilab Library Server (fulltext available) - Fulltext - Fulltext
8.
The DUNE Far Detector Interim Design Report, Volume 2: Single-Phase Module / DUNE Collaboration
The DUNE IDR describes the proposed physics program and technical designs of the DUNE far detector modules in preparation for the full TDR to be published in 2019. [...]
arXiv:1807.10327 ; Fermilab-Design-2018-03 ; FERMILAB-DESIGN-2018-03.
- 2018 - 324.
Fermilab Library Server (fulltext available) - Fermilab News article - Fulltext - Fulltext
9.
The DUNE Far Detector Interim Design Report Volume 1: Physics, Technology and Strategies / DUNE Collaboration
The DUNE IDR describes the proposed physics program and technical designs of the DUNE Far Detector modules in preparation for the full TDR to be published in 2019. [...]
arXiv:1807.10334 ; Fermilab-Design-2018-02 ; FERMILAB-DESIGN-2018-02.
- 2018 - 83.
Fermilab News article - Fermilab Library Server (fulltext available) - Fulltext - Fulltext
10.
Experimental results of beryllium exposed to intense high energy proton beam pulses / Ammigan, K (Fermilab) ; Hartsell, B (Fermilab) ; Hurh, P (Fermilab) ; Zwaska, R (Fermilab) ; Butcher, M (CERN) ; Guinchard, M (CERN) ; Calviani, M (CERN) ; Losito, R (CERN) ; Roberts, S (Oxford U. ; Culham Lab) ; Kuksenko, V (Oxford U.) et al.
Beryllium is extensively used in various accelerator beam lines and target facilities as material for beam windows, and to a lesser extent, as secondary particle production targets. With increasing beam intensities of future accelerator facilities, it is critical to understand the response of beryllium under extreme conditions to reliably operate these components as well as avoid compromising particle production efficiency by limiting beam parameters. [...]
FERMILAB-CONF-16-405-AD.- 2017 - 4 p. - Published in : 10.18429/JACoW-NAPAC2016-MOPOB14 Fulltext: PDF; External link: FERMILABCONF
In : 2016 North American Particle Accelerator Conference, Chicago, IL, USA, 9 - 14 Oct 2016, pp.MOPOB14

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