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CERN Document Server 171 records found  1 - 10nextend  jump to record: Search took 0.60 seconds. 
1.
Cold atoms in space: community workshop summary and proposed road-map / Alonso, Iván (Balearic Islands U.) ; Alpigiani, Cristiano (Washington U., Seattle) ; Altschul, Brett (South Carolina U.) ; Araújo, Henrique (Imperial Coll., London) ; Arduini, Gianluigi (CERN) ; Arlt, Jan (Aarhus U.) ; Badurina, Leonardo (King's Coll. London) ; Balaž, Antun (Belgrade, Inst. Phys.) ; Bandarupally, Satvika (Florence U. ; INFN, Florence) ; Barish, Barry C. (LIGO Lab., Caltech) et al.
We summarize the discussions at a virtual Community Workshop on Cold Atoms in Space concerning the status of cold atom technologies, the prospective scientific and societal opportunities offered by their deployment in space, and the developments needed before cold atoms could be operated in space. The cold atom technologies discussed include atomic clocks, quantum gravimeters and accelerometers, and atom interferometers. [...]
arXiv:2201.07789; FERMILAB-CONF-22-694-V; CERN-TH-2022-004.- 2022-11-20 - 64 p. - Published in : EPJ Quant. Technol.: 9 (2022) , no. 1, pp. 30 Fulltext: bb4d1d31d6edd562e94939489bfc05d6 - PDF; 2201.07789 - PDF; Fulltext from Publisher: PDF; External link: Fermilab Library Server
2.
The SLAC RCE Platform for ProtoDUNE / Tsang, K V (SLAC) ; Convery, M (SLAC) ; Graham, M (SLAC) ; Herbst, R (SLAC) ; Russell, J (SLAC)
The ProtoDUNE-SP is a single-phase liquid argon time projection chamber (LArTPC) prototype for the Deep Underground Neutrino Experiment (DUNE). Signals from 15,360 electronic channels are received by 60 Reconfigurable Cluster Elements (RCEs), which are processing elements designed at SLAC for a wide range of applications and are based upon the “system-onchip” Xilinx Zynq family of FPGAs. [...]
2019 - 7 p. - Published in : EPJ Web Conf. 214 (2019) 01025 Fulltext: PDF;
In : 23rd International Conference on Computing in High Energy and Nuclear Physics, CHEP 2018, Sofia, Bulgaria, 9 - 13 Jul 2018, pp.01025
3.
A Next-Generation Liquid Xenon Observatory for Dark Matter and Neutrino Physics / Aalbers, J. (SLAC ; KIPAC, Menlo Park) ; AbdusSalam, S.S. (Shahid Beheshti U.) ; Abe, K. (Kamioka Observ. ; Tokyo U., IPMU) ; Aerne, V. (Zurich U.) ; Agostini, F. (U. Bologna, DIFA ; INFN, Bologna) ; Maouloud, S. Ahmed (Paris U., VI-VII) ; Akerib, D.S. (SLAC ; KIPAC, Menlo Park) ; Akimov, D.Yu. (Moscow Phys. Eng. Inst.) ; Akshat, J. (Purdue U.) ; Musalhi, A.K. Al (Oxford U.) et al.
The nature of dark matter and properties of neutrinos are among the most pressing issues in contemporary particle physics. The dual-phase xenon time-projection chamber is the leading technology to cover the available parameter space for Weakly Interacting Massive Particles (WIMPs), while featuring extensive sensitivity to many alternative dark matter candidates. [...]
arXiv:2203.02309; INT-PUB-22-003; FERMILAB-PUB-22-112-PPD-QIS-T.- 2022-12-15 - 77 p. - Published in : J. Phys. G 50 (2023) 013001 Fulltext: 2203.02309 - PDF; jt - PDF; Fulltext from Publisher: PDF; External link: Fermilab Library Server
4.
The International Pulsar Timing Array second data release: Search for an isotropic Gravitational Wave Background / Antoniadis, J. (FORTH, Heraklion ; Bonn, Max Planck Inst., Radioastron. ; Argelander Inst. Astron.) ; Arzoumanian, Z. (NASA, Goddard) ; Babak, S. (APC, Paris) ; Bailes, M. (Swinburne U. Tech., Hawthorn ; ARC, CoEPP, Australia) ; Nielsen, A.-S. Bak (Bonn, Max Planck Inst., Radioastron. ; Bielefeld U.) ; Baker, P.T. (Widener U.) ; Bassa, C.G. (ASTRON, Dwingeloo) ; Becsy, B. (Montana State U.) ; Berthereau, A. (LPC2E, Orleans ; Station Radioastronomy, Nancay) ; Bonetti, M. (Milan Bicocca U. ; INFN, Milan Bicocca) et al.
We searched for an isotropic stochastic gravitational wave background in the second data release of the International Pulsar Timing Array, a global collaboration synthesizing decadal-length pulsar-timing campaigns in North America, Europe, and Australia. In our reference search for a power law strain spectrum of the form $h_c = A(f/1\,\mathrm{yr}^{-1})^{\alpha}$, we found strong evidence for a spectrally-similar low-frequency stochastic process of amplitude $A = 3.8^{+6.3}_{-2.5}\times10^{-15}$ and spectral index $\alpha = -0.5 \pm 0.5$, where the uncertainties represent 95% credible regions, using information from the auto- and cross-correlation terms between the pulsars in the array. [...]
arXiv:2201.03980.- 2022-01-27 - 15 p. - Published in : Mon. Not. R. Astron. Soc. 510 (2022) 4873 Fulltext: PDF;
5.
Experiment Simulation Configurations Approximating DUNE TDR / DUNE Collaboration
The Deep Underground Neutrino Experiment (DUNE) is a next-generation long-baseline neutrino oscillation experiment consisting of a high-power, broadband neutrino beam, a highly capable near detector located on site at Fermilab, in Batavia, Illinois, and a massive liquid argon time projection chamber (LArTPC) far detector located at the 4850L of Sanford Underground Research Facility in Lead, South Dakota. [...]
arXiv:2103.04797 ; FERMILAB-FN-1125-ND.
- 15.
Fulltext
6.
Prospects for Beyond the Standard Model Physics Searches at the Deep Underground Neutrino Experiment / DUNE Collaboration
The Deep Underground Neutrino Experiment (DUNE) will be a powerful tool for a variety of physics topics. The high-intensity proton beams provide a large neutrino flux, sampled by a near detector system consisting of a combination of capable precision detectors, and by the massive far detector system located deep underground. [...]
arXiv:2008.12769; FERMILAB-PUB-20-459-LBNF-ND; FERMILAB-PUB-20-459-LBNF-ND.- 2021-04-16 - 51 p. - Published in : Eur. Phys. J. C 81 (2021) 322 Article from SCOAP3: PDF; Fulltext: 2008.12769 - PDF; Fermilab Library Server - PDF; Fulltext from Publisher: PDF; External link: Fermilab Library Server
7.
Supernova Neutrino Burst Detection with the Deep Underground Neutrino Experiment / DUNE Collaboration
The Deep Underground Neutrino Experiment (DUNE), a 40-kton underground liquid argon time projection chamber experiment, will be sensitive to the electron-neutrino flavor component of the burst of neutrinos expected from the next Galactic core-collapse supernova. Such an observation will bring unique insight into the astrophysics of core collapse as well as into the properties of neutrinos. [...]
arXiv:2008.06647; FERMILAB-PUB-20-380-LBNF; FERMILAB-PUB-20-380-LBNF.- 2021-05-15 - 26 p. - Published in : Eur. Phys. J. C 81 (2021) 423 Fulltext: 2008.06647 - PDF; fermilab-pub-20-380-lbnf - PDF; Fulltext from Publisher: PDF; External link: Fermilab Library Server (fulltext available)
8.
Long-baseline neutrino oscillation physics potential of the DUNE experiment / DUNE Collaboration
The sensitivity of the Deep Underground Neutrino Experiment (DUNE) to neutrino oscillation is determined, based on a full simulation, reconstruction, and event selection of the far detector and a full simulation and parameterized analysis of the near detector. Detailed uncertainties due to the flux prediction, neutrino interaction model, and detector effects are included. [...]
arXiv:2006.16043; FERMILAB-PUB-20-251-E-LBNF-ND-PIP2-SCD; PUB-20-251-E-LBNF-ND-PIP2-SCD.- 2020-10-22 - 34 p. - Published in : Eur. Phys. J. C 80 (2020) 978 Article from SCOAP3: PDF; Fulltext: 2006.16043 - PDF; fermilab-pub-20-251-e-lbnf-nd-pip2-scd - PDF; External link: Fermilab Library Server (fulltext available)
9.
Neutrino interaction classification with a convolutional neural network in the DUNE far detector / DUNE Collaboration
The Deep Underground Neutrino Experiment is a next-generation neutrino oscillation experiment that aims to measure $CP$-violation in the neutrino sector as part of a wider physics program. A deep learning approach based on a convolutional neural network has been developed to provide highly efficient and pure selections of electron neutrino and muon neutrino charged-current interactions. [...]
arXiv:2006.15052; FERMILAB-PUB-20-241-E.- 2020-11-09 - 20 p. - Published in : Phys. Rev. D 102 (2020) 092003 Fulltext: 2006.15052 - PDF; fermilab-pub-20-241-e - PDF; Fulltext from Publisher: PhysRevD.102 - PDF; 10.1103_PhysRevD.102.092003 - PDF; External link: Fermilab Library Server (fulltext available)
10.
An Update to the Letter of Intent for MATHUSLA: Search for Long-Lived Particles at the HL-LHC / Alpigiani, Cristiano (Washington U., Seattle) ; Arteaga-Velázquez, Juan Carlos (IFM-UMSNH, Michoacan) ; Ball, Austin (CERN) ; Barak, Liron (Tel Aviv U.) ; Barron, Jared (Toronto U.) ; Batell, Brian (Pittsburgh U.) ; Beacham, James (Ohio State U.) ; Benhammo, Yan (Tel Aviv U.) ; Caballero-Mora, Karen Salomé (Chiapas Autonoma U.) ; Camarri, Paolo (Rome U., Tor Vergata) et al.
We report on recent progress in the design of the proposed MATHUSLA Long Lived Particle (LLP) detector for the HL-LHC, updating the information in the original Letter of Intent (LoI), see CDS:LHCC-I-031, arXiv:1811.00927. [...]
arXiv:2009.01693 ; CERN-LHCC-2020-014 ; LHCC-I-031-ADD-1 ; LHCC-I-031-ADD-1.
- 2020. - 22 p.
FERMILABFN - Fulltext - Fulltext - Fulltext

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