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CERN Document Server 32 records found  1 - 10nextend  jump to record: Search took 0.62 seconds. 
1.
Post-LS3 Experimental Options in ECN3 / Ahdida, C. (CERN) ; Arduini, G. (CERN ; Arizona State U.) ; Balazs, K. (CERN) ; Bartosik, H. (CERN) ; Bernhard, J. (CERN) ; Boyarsky, A. (Leiden U. ; IP2I, Lyon) ; Brod, J. (Cincinnati U.) ; Brugger, M. (CERN) ; Calviani, M. (CERN) ; Ceccucci, A. (CERN) et al.
The Experimental Cavern North 3 (ECN3) is an underground experimental cavern on the CERN Prévessin site. [...]
arXiv:2310.17726.
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Fulltext
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Post-LS3 Experimental Options in ECN3 / Ahdida, Claudia (CERN) ; Arduini, Gianluigi (CERN) ; Balazs, Kincso (CERN) ; Bartosik, Hannes (CERN) ; Bernhard, Johannes (CERN) ; Boyarsky, Alexey (Leiden University (NL)) ; Brod, Joachim (University of Cincinnati) ; Brugger, Markus (CERN) ; Calviani, Marco (CERN) ; Ceccucci, Augusto (CERN) et al.
The Experimental Cavern North 3 (ECN3) is an underground experimental cavern on the CERN Prévessin site. ECN3 currently hosts the NA62 experiment, with a physics programme devoted to rare kaon decays and searches of hidden particles approved until Long Shutdown 3 (LS3). [...]
CERN-PBC-REPORT-2023-003.- Geneva : CERN, 2023 - 80. Fulltext: PDF;
3.
Strong Interaction Physics at the Luminosity Frontier with 22 GeV Electrons at Jefferson Lab / Accardi, A. (Hampton U.) ; Achenbach, P. (Jefferson Lab) ; Adhikari, D. (Virginia Tech.) ; Afanasev, A. (George Washington U.) ; Akondi, C.S. (Florida State U.) ; Akopov, N. (Yerevan Phys. Inst.) ; Albaladejo, M. (Valencia U., IFIC) ; Albataineh, H. (Texas A-M ; HARC, Woodlands) ; Albrecht, M. (Jefferson Lab) ; Almeida-Zamora, B. (Sonora U.) et al.
This document presents the initial scientific case for upgrading the Continuous Electron Beam Accelerator Facility (CEBAF) at Jefferson Lab (JLab) to 22 GeV. It is the result of a community effort, incorporating insights from a series of workshops conducted between March 2022 and April 2023. [...]
arXiv:2306.09360; JLAB-PHY-23-3840; JLAB-THY-23-3848.- 2024-09-04 - 139 p. - Published in : Eur. Phys. J. A 60 (2024) 173 Fulltext: PDF; External link: JLab Document Server
4.
Feebly Interacting Particles: FIPs 2022 workshop report / Antel, C. (Geneva U.) ; Battaglieri, M. (INFN, Genoa) ; Beacham, J. (Duke U.) ; Boehm, C. (Sydney U.) ; Buchmüller, O. (Imperial Coll., London) ; Calore, F. (Annecy, LAPTH) ; Carenza, P. (Stockholm U., OKC) ; Chauhan, B. (U. Iowa, Iowa City) ; Cladè, P. (Paris, Lab. Kastler Brossel) ; Coloma, P. (Madrid, IFT ; Madrid, Autonoma U.) et al.
Particle physics today faces the challenge of explaining the mystery of dark matter, the origin of matter over anti-matter in the Universe, the origin of the neutrino masses, the apparent fine-tuning of the electro-weak scale, and many other aspects of fundamental physics. Perhaps the most striking frontier to emerge in the search for answers involves new physics at mass scales comparable to familiar matter, below the GeV-scale, or even radically below, down to sub-eV scales, and with very feeble interaction strength. [...]
arXiv:2305.01715; CERN-TH-2023-061; DESY-23-050; FERMILAB-PUB-23-149-PPD; INFN-23-14-LNF; JLAB-PHY-23-3789; LA-UR-23-21432; MITP-23-015.- 2023-12-11 - 266 p. - Published in : Eur. Phys. J. C 83 (2023) 1122 Fulltext: PDF; Fulltext from Publisher: document - PDF; Publication - PDF;
In : Workshop on Feebly-Interacting Particles (FIPs 2022), CERN, Geneva, Switzerland, 17 - 21 Oct 2022, pp.1122
5.
Physics Opportunities for the Fermilab Booster Replacement / Arrington, John (LBL, Berkeley) ; Barrow, Joshua (MIT ; Tel Aviv U.) ; Batell, Brian (Pittsburgh U.) ; Bernstein, Robert (Fermilab) ; Blinov, Nikita (Victoria U.) ; Brice, S.J. (Fermilab) ; Culbertson, Ray (Fermilab) ; deNiverville, Patrick (Los Alamos) ; Di Benedetto, Vito (Fermilab) ; Eldred, Jeff (Fermilab) et al.
This white paper presents opportunities afforded by the Fermilab Booster Replacement and its various options. [...]
arXiv:2203.03925 ; FERMILAB-FN-1145 ; LA-UR-22-21987.
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Fermilab Library Server - eConf - Fulltext - Fulltext
6.
New Physics Searches at Kaon and Hyperon Factories / Goudzovski, Evgueni (Birmingham U.) ; Redigolo, Diego (CERN ; INFN, Florence) ; Tobioka, Kohsaku (Florida State U. ; KEK, Tsukuba) ; Zupan, Jure (Cincinnati U.) ; Alonso-Álvarez, Gonzalo (McGill U.) ; Alves, Daniele S.M. (Los Alamos) ; Bansal, Saurabh (Cincinnati U.) ; Bauer, Martin (Durham U., ICC) ; Brod, Joachim (Cincinnati U.) ; Chobanova, Veronika (Santiago de Compostela U., IGFAE) et al.
Rare meson decays are among the most sensitive probes of both heavy and light new physics. Among them, new physics searches using kaons benefit from their small total decay widths and the availability of very large datasets. [...]
arXiv:2201.07805; FERMILAB-PUB-22-057-T.- 2023-01-06 - 68 p. - Published in : Rep. Prog. Phys. 86 (2023) 016201 Fulltext: jt - PDF; 2201.07805 - PDF; 20769f2ea1acd21399f56329734230a9 - PDF; External link: Fermilab Accepted Manuscript
7.
Feebly-interacting particles: FIPs 2020 workshop report / Agrawal, Prateek (Oxford U., Theor. Phys.) ; Bauer, Martin (Durham U., IPPP) ; Beacham, James (Duke U.) ; Berlin, Asher (New York U., CCPP ; New York U.) ; Boyarsky, Alexey (Leiden U.) ; Cebrian, Susana (Zaragoza U.) ; Cid-Vidal, Xabier (Santiago de Compostela U.) ; d'Enterria, David (CERN) ; De Roeck, Albert (CERN) ; Drewes, Marco (Louvain U., CP3) et al.
With the establishment and maturation of the experimental programs searching for new physics with sizeable couplings at the LHC, there is an increasing interest in the broader particle and astrophysics community for exploring the physics of light and feebly-interacting particles as a paradigm complementary to a New Physics sector at the TeV scale and beyond. FIPs 2020 has been the first workshop fully dedicated to the physics of feebly-interacting particles and was held virtually from 31 August to 4 September 2020. [...]
arXiv:2102.12143.- 2021-11-19 - 246 p. - Published in : Eur. Phys. J. C 81 (2021) 1015 Fulltext: 2102.12143 - PDF; document - PDF;
8.
Quark Flavor Phenomenology of the QCD Axion / Martin Camalich, Jorge (IAC, La Laguna ; Laguna U., Tenerife) ; Pospelov, Maxim (Minnesota U. ; Minnesota U., Theor. Phys. Inst.) ; Vuong, Pham Ngoc Hoa (LPSC, Grenoble) ; Ziegler, Robert (CERN ; KIT, Karlsruhe, TTP) ; Zupan, Jure (Cincinnati U.)
Axion models with generation-dependent Peccei-Quinn charges can lead to flavor-changing neutral currents, thus motivating QCD axion searches at precision flavor experiments. We rigorously derive limits on the most general effective flavor-violating couplings from current measurements and assess their discovery potential. [...]
arXiv:2002.04623.- 2020-07-28 - 24 p. - Published in : Phys. Rev. D 102 (2020) 015023 Article from SCOAP3: PDF; Fulltext: PDF;
9.
Physics Beyond Colliders at CERN: Beyond the Standard Model Working Group Report / Beacham, J. (Duke U. (main)) ; Burrage, C. (U. Nottingham) ; Curtin, D. (Toronto U.) ; De Roeck, A. (CERN) ; Evans, J. (Cincinnati U.) ; Feng, J.L. (UC, Irvine) ; Gatto, C. (INFN, Naples ; NIU, DeKalb) ; Gninenko, S. (Moscow, INR) ; Hartin, A. (U. Coll. London) ; Irastorza, I. (U. Zaragoza, LFNAE) et al.
The Physics Beyond Colliders initiative is an exploratory study aimed at exploiting the full scientific potential of the CERN’s accelerator complex and scientific infrastructures through projects complementary to the LHC and other possible future colliders. These projects will target fundamental physics questions in modern particle physics. [...]
arXiv:1901.09966; CERN-PBC-REPORT-2018-007.- Geneva : CERN, 2019-12-11 - 114 p. - Published in : J. Phys. G 47 (2020) 010501 Full Text: PDF; Fulltext: PDF; Fulltext from publisher: PDF;
10.
Millicharged particles in neutrino experiments / Magill, Gabriel (Perimeter Inst. Theor. Phys. ; McMaster U.) ; Plestid, Ryan (Perimeter Inst. Theor. Phys. ; McMaster U.) ; Pospelov, Maxim (Perimeter Inst. Theor. Phys. ; Victoria U. ; CERN) ; Tsai, Yu-Dai (Cornell U., LEPP ; Fermilab)
We set constraints and future sensitivity projections on millicharged particles (MCPs) based on electron scattering data in numerous neutrino experiments, starting with MiniBooNE and the Liquid Scintillator Neutrino Detector (LSND). Both experiments are found to provide new (and leading) constraints in certain MCP mass windows: 5 - 35 MeV for LSND and 100 - 180 MeV for MiniBooNE. [...]
arXiv:1806.03310; FERMILAB-PUB-18-631-A.- 2019-02-20 - 7 p. - Published in : Phys. Rev. Lett. 122 (2019) 071801 Article from SCOAP3: PDF; Fulltext: 1806.03310 - PDF; fermilab-pub-18-631-a - PDF; External link: Fermilab Library Server (fulltext available)

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