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Production and qualification of an electrospun ceramic nanofiber material as a candidate future high power target
/ Bidhar, Sujit (Fermilab) ; Goss, Valerie (Chicago State U.) ; Chen, Wei-Ying (Argonne) ; Stanishevsky, Andrei (Alabama U.) ; Li, Meimei (Argonne) ; Kuksenko, Slava (UKAEA, Culham) ; Calviani, Marco (CERN) ; Zwaska, Robert (Fermilab)
In an effort to develop and design next generation high power target materials for particle physics research, the possibility of fabricating nonwoven metallic or ceramic nanofibers by electrospinning process is explored. A low-cost electrospinning unit is set up for in-house production of various ceramic nanofibers. [...]
FERMILAB-PUB-21-028-AD.-
2021 - 15 p.
- Published in : Phys. Rev. Accel. Beams 24 (2021) 123001
Fulltext: PDF; Fulltext from Publisher: PDF; External link: Fermilab Accepted Manuscript
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2.
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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;
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3.
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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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4.
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Examination of Beryllium Under Intense High Energy Proton Beam at CERN's HiRadMat Facility
/ Ammigan, K. (Fermilab) ; Hartsell, B. (Fermilab) ; Hurh, P. (Fermilab) ; Zwaska, R. (Fermilab) ; Atherton, A. (Rutherford) ; Caretta, O. (Rutherford) ; Davenne,T. (Rutherford) ; Densham, C. (Rutherford) ; Fitton, M. (Rutherford) ; Loveridge, P. (Rutherford) et al.
Beryllium is extensively used in various accelerator beam lines and target facilities as material for beam win- dows, and to a lesser extent, as secondary particle produc- tion targets. With increasing beam intensities of future ac- celerator facilities, it is critical to understand the response of beryllium under extreme conditions to avoid compro- mising particle production efficiency by limiting beam pa- rameters. [...]
CERN-ACC-2017-0023.-
Geneva : CERN, 2017
- Published in :
Fulltext: PDF;
In : 6th International Particle Accelerator Conference, Richmond, VA, USA, 3 - 8 May 2015
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5.
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Irradiation Facilities and Irradiation Methods for High Power Target
/ Pellemoine, F. (Fermilab) ; Barbier, C. (Oak Ridge) ; Sun, Y. (Argonne) ; Ammigan, K. (Fermilab) ; Bidhar, S. (Fermilab) ; Zwaska, B. (Fermilab) ; McClintock, D. (Oak Ridge) ; Taller, S. (Oak Ridge) ; Winder, D. (Oak Ridge) ; Cutler, C.S. (Brookhaven Natl. Lab.) et al.
High Power Target systems are key elements in future neutrino and other rare particle production in accelerators. [...]
arXiv:2203.08239 ; FERMILAB-CONF-22-124-AD.
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19 p.
Fermilab Library Server - eConf - Fulltext - Fulltext
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6.
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Modeling Needs for High Power Target
/ Barbier, Charlotte (Oak Ridge) ; Bidhar, Sujit (Fermilab) ; Calviani, Marco (CERN) ; Dooling, Jeff (Argonne) ; Gao, Jian (Michigan State U.) ; Jacques, Aaron (Oak Ridge) ; Lu, Wei (Oak Ridge) ; Voti, Roberto Li (INFN, Rome) ; Pellemoine, Frederique (Fermilab) ; Mach, Justin (Oak Ridge) et al.
The next generation of high power targets will use more complex geometries, novel materials, and new concepts (like flowing granular materials); however, the current numerical approaches will not be sufficient to converge towards a reliable target design that satisfies the physical requirements. [...]
FERMILAB-CONF-22-168-AD ; arXiv:2203.04714.
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Fermilab Library Server - eConf - Fulltext - Fulltext
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7.
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Examination of Beryllium Under Intense High Energy Proton Beam at CERN's HiRadMat Facility
/ Ammigan, K ; Hartsell, B (Fermilab) ; Hurh, P (Fermilab) ; Zwaska, R (Fermilab) ; Atherton, A (Rutherford) ; Caretta, O (Rutherford) ; Davenne, t (Rutherford) ; Densham, C (Rutherford) ; Fitton, M (Rutherford) ; Loveridge, P (Rutherford) et al.
Beryllium is extensively used in various accelerator beam lines and target facilities as material for beam win- dows, and to a lesser extent, as secondary particle produc- tion targets. With increasing beam intensities of future ac- celerator facilities, it is critical to understand the response of beryllium under extreme conditions to avoid compro- mising particle production efficiency by limiting beam pa- rameters. [...]
FERMILAB-CONF-15-163-AD; IPAC-2015-WEPTY015; CERN-ACC-2015-360.-
2015 - 4 p.
- Published in : (2015) , pp. WEPTY015
External links: FERMILABCONF; JACOW
In : 6th International Particle Accelerator Conference, Richmond, VA, USA, 3 - 8 May 2015, pp.WEPTY015
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The RaDIATE High-Energy Proton Materials Irradiation Experiment at the Brookhaven Linac Isotope Producer Facility
/ Ammigan, Kavin (Fermilab) ; Amroussia, Aida (Michigan State U.) ; Avilov, Mikhail (Michigan State U., East Lansing (main)) ; Boehlert, Carl (Michigan State U.) ; Calviani, Marco (CERN) ; Casella, Andrew (PNL, Richland) ; Densham, Chris (Rutherford) ; Fornasiere, Elvis (CERN) ; Hurh, Patrick (Fermilab) ; Ishida, Taku (KEK, Tsukuba) et al.
The RaDIATE collaboration (Radiation Damage In Accelerator Target Environments) was founded in 2012 to bring together the high-energy accelerator target and nuclear materials communities to address the challenging issue of radiation damage effects in beam-intercepting materials. Success of current and future high intensity accelerator target facilities requires a fundamental understanding of these effects including measurement of materials property data. [...]
CERN-ACC-2017-241.-
2017 - 4 p.
- Published in : 10.18429/JACoW-IPAC2017-WEPVA138
Fulltext: PDF;
In : 8th International Particle Accelerator Conference, Copenhagen, Denmark, 14 - 19 May 2017, pp.WEPVA138
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9.
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Recommendations of the Finance Committee to Council as to the Financing of the 1965 Supplementary Programme
Recommandations du Comité des Finances au Conseil au sujet du financement du programme supplémentaire pour 1965
CERN/0572
28th Session of Council ; 1964
English: PDF French: PDF
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10.
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Expenditure in Excess of Provisions
Dépassements de crédits
CERN/FC/0726/Add.
64th Meeting of Finance Committee ; 1964
English: PDF French: PDF
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