CERN Accelerating science

CERN Document Server 364 ჩანაწერია ნაპოვნი  1 - 10შემდეგიდასასრული  ჩანაწერთან გადასვლა: ძიებას დასჭირდა 1.28 წამი. 
1.
Development of the BCM system and readout for ATLAS / Asensi Tortajada, Ignacio (CERN) ; Campredon, Adrien Baptiste (CERN) ; Hiti, Bojan (Stefan Inst., Ljubljana) ; Kagan, Harris (Ohio State U.) ; Frais-Kölbl, Helmut (Fachhochsch., Wiener Neustadt) ; Macek, Boštjan (Stefan Inst., Ljubljana) ; Mali, Miha (Stefan Inst., Ljubljana) ; Mikuž, Marko (Stefan Inst., Ljubljana) ; Oh, Alexander (Manchester U.) ; Porter, Alice Laura (Manchester U.) et al.
The High Luminosity upgrade of the Large Hadron Collider will increase the LHC luminosity and with it the density of particles on the detector by an order of magnitude. For protecting the inner silicon detectors of the ATLAS experiment and for monitoring the delivered luminosity, a radiation hard beam monitor has been developed. [...]
2024 - 7 p. - Published in : PoS VERTEX2023 (2024) 023 Fulltext: PDF;
In : 32nd International Workshop on Vertex Detectors (VERTEX 2023), Sestri Levante, Italy, 16 - 20 Oct 2023, pp.023
2.
Latest results from the RD42 collaboration on the radiation tolerance of polycrystalline diamond detectors / Mali, M (Plymouth U.) ; Artuso, M (Syracuse U. (main)) ; Bäni, L (ETH, Zurich (main)) ; Bartosik, M (CERN) ; Bellini, V (Catania U. ; INFN, Catania) ; Bentele, B (Colorado U.) ; Bergonzo, P (University Coll. London) ; Bes, A (LPSC, Grenoble) ; Brom, J-M (Strasbourg, IPHC) ; Chiodini, G (INFN, Lecce) et al.
As nuclear and particle physics facilities move to higher intensities, the detectors used there must be more radiation tolerant. Diamond is in use at many facilities due to its inherent radiation tolerance and ease of use. [...]
2024 - 4 p. - Published in : Nucl. Instrum. Methods Phys. Res., A 1062 (2024) 169202
In : PSD13: The 13th International Conference on Position Sensitive Detectors, Oxford, United Kingdom, 3 - 9 Sep 2023, pp.169202
3.
Development of the BCM' System for Beam Abort and Luminosity Monitoring at the HL-LHC / Gorišek, Andrej (Stefan Inst., Ljubljana) ; Abusareya, Mo'men (Ohio State U., Columbus (main)) ; Asensi, Ignacio (CERN) ; Hiti, Bojan (Stefan Inst., Ljubljana) ; Kagan, Harris (Ohio State U., Columbus (main)) ; Frais-Kölbl, Helmut (Fachhochsch., Wiener Neustadt) ; Macek, Boštjan (Stefan Inst., Ljubljana) ; Mali, Miha (Stefan Inst., Ljubljana) ; Mikuž, Marko (Stefan Inst., Ljubljana) ; Oh, Alexander (U. Manchester (main)) et al.
The High Luminosity upgrade of Large Hadron Collider (HL-LHC) will increase the LHC Luminosity and with it the density of particles on the detector by an order of magnitude. For protecting the inner silicon detectors of the ATLAS and other experiments and for monitoring the delivered luminosity, a radiation hard beam monitor is being developed. [...]
2023 - 11 p. - Published in : PoS Pixel2022 (2023) 040 Fulltext: PDF;
In : International Workshop on Semiconductor Pixel Detectors for Tracking and Imaging (PIXEL 2022), Santa Fe, USA, 11 - 16 Dec 2022, pp.040
4.
Progress in Diamond Detectors / RD42 Collaboration
Detectors based on Chemical Vapor Deposition (CVD) diamond have been used successfully in Luminosity and Beam Condition Monitors (BCM) in the highest radiation areas of the LHC. Future experiments at CERN will accumulate an order of magnitude larger fluence. [...]
2023 - 10 p. - Published in : PoS Pixel2022 (2023) 095 Fulltext: PDF;
In : International Workshop on Semiconductor Pixel Detectors for Tracking and Imaging (PIXEL 2022), Santa Fe, USA, 11 - 16 Dec 2022, pp.095
5.
Radiation tolerance of diamond detectors / RD42 Collaboration
Diamond is used as detector material in high energy physics experiments due to its inherent radiation tolerance. The RD42 collaboration has measured the radiation tolerance of chemical vapour deposition (CVD) diamond against proton, pion, and neutron irradiation. [...]
2022 - 5 p. - Published in : J. Phys. : Conf. Ser. 2374 (2022) 012172 Fulltext: PDF;
In : International Conference on Technology and Instrumentation in Particle Physics (TIPP 2021), Online, Canada, 24 - 29 May 2021, pp.012172
6.
The ATLAS experiment at the CERN Large Hadron Collider: a description of the detector configuration for Run 3 / ATLAS Collaboration
The ATLAS detector is installed in its experimental cavern at Point 1 of the CERN Large Hadron Collider. During Run 2 of the LHC, a luminosity of $\mathcal{L}=2\times 10^{34}\mathrm{cm}^{-2}\mathrm{s}^{-1}$ was routinely achieved at the start of fills, twice the design luminosity. [...]
arXiv:2305.16623; CERN-EP-2022-259.- Geneva : CERN, 2024-05-23 - 233 p. - Published in : JINST 19 (2024) P05063 Fulltext: 2305.16623 - PDF; document - PDF; External link: Previous draft version
In : The Large Hadron Collider and The Experiments for Run 3
7.
Axion Dark Matter / Adams, C.B. (Columbia U.) ; Aggarwal, N. ; Agrawal, A. (Chicago U.) ; Balafendiev, R. (ITMO U., St. Petersburg) ; Bartram, C. (Washington U., Seattle) ; Baryakhtar, M. (Washington U., Seattle) ; Bekker, H. (Helmholtz Inst., Mainz ; Mainz U.) ; Belov, P. (ITMO U., St. Petersburg) ; Berggren, K.K. (MIT) ; Berlin, A. (Fermilab) et al.
Axions are well-motivated dark matter candidates with simple cosmological production mechanisms. [...]
arXiv:2203.14923 ; FERMILAB-CONF-22-996-PPD-T.
- 96.
eConf - Fermilab Library Server - Fulltext - Fulltext
8.
Neutron tagging following atmospheric neutrino events in a water Cherenkov detector / Super-Kamiokande Collaboration
We present the development of neutron-tagging techniques in Super-Kamiokande IV using a neural network analysis. The detection efficiency of neutron capture on hydrogen is estimated to be 26%, with a mis-tag rate of 0.016 per neutrino event. [...]
arXiv:2209.08609; FERMILAB-PUB-22-873-ND.- 2022-10-18 - 40 p. - Published in : JINST 17 (2022) P10029 Fulltext: 2209.08609 - PDF; document - PDF; ff15af3f0a01c9edd3bb9f60772a7df9 - PDF; Fulltext from Publisher: PDF; External link: Fermilab Library Server
9.
New Horizons: Scalar and Vector Ultralight Dark Matter / Antypas, D. (Mainz U. ; Helmholtz Inst., Mainz) ; Banerjee, A. (Weizmann Inst.) ; Bartram, C. (Washington U., Seattle) ; Baryakhtar, M. (Washington U., Seattle) ; Betz, J. (U. Delaware, Newark) ; Bollinger, J.J. (NIST, Boulder) ; Boutan, C. (PNL, Richland) ; Bowring, D. (Fermilab) ; Budker, D. (Helmholtz Inst., Mainz ; Mainz U. ; UC, Berkeley) ; Carney, D. (LBL, Berkeley) et al.
The last decade has seen unprecedented effort in dark matter model building at all mass scales coupled with the design of numerous new detection strategies. [...]
arXiv:2203.14915 ; FERMILAB-PUB-22-262-AD-PPD-T.
- 89.
Fermilab Library Server - eConf - Fulltext - Fulltext
10.
Search for Darkonium in $e^+e^-$ Collisions / BABAR Collaboration
Collider searches for dark sectors, new particles interacting only feebly with ordinary matter, have largely focused on identifying signatures of new mediators, leaving much of dark sector structures unexplored. In particular, the existence of dark matter bound states (darkonia) remains to be investigated. [...]
arXiv:2106.08529; BABAR-PUB-21/002; SLAC-PUB-17608.- 2022-01-11 - 10 p. - Published in : Phys. Rev. Lett. 128 (2022) 021802 Fulltext: PDF;

CERN Document Server : 364 ჩანაწერია ნაპოვნი   1 - 10შემდეგიდასასრული  ჩანაწერთან გადასვლა:
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