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CERN Document Server 2,048 records found  1 - 10nextend  jump to record: Search took 0.56 seconds. 
1.
Timepix3 as solid-state time-projection chamber in particle and nuclear physics / MOEDAL Collaboration
Timepix3 devices are hybrid pixel detectors developed within the Medipix3 collaboration at CERN providing a simultaneous measurement of energy (ToT) and time of arrival (ToA) in each of its 256$\times$256 pixels (pixel pitch: 55 µm). The timestamp resolution below 2 ns allows a measurement of charge carrier drift times, so that particle trajectories can be reconstructed in 3D on a microscopic level ($z$-resolution: 30-60 µm). [...]
SISSA, 2021 - 8 p. - Published in : PoS ICHEP2020 (2021) 720 Fulltext: PDF;
In : 40th International Conference on High Energy Physics (ICHEP), Prague, Czech Republic, 28 Jul - 6 Aug 2020, pp.720
2.
First search for dyons with the full MoEDAL trapping detector in 13 TeV pp collisions / MoEDAL Collaboration
The MoEDAL trapping detector, consists of approximately 800 kg of aluminium volumes. It was exposed during Run-2 of the LHC program to 6.46 fb^-1 of 13 TeV proton-proton collisions at the LHCb interaction point. [...]
arXiv:2002.00861.- 2021-02-20 - 7 p. - Published in : Phys. Rev. Lett. Article from SCOAP3: PDF; Fulltext: PDF;
3.
Search for magnetic monopoles with the MoEDAL forward trapping detector in 2.11 fb$^{-1}$ of 13 TeV proton-proton collisions at the LHC / MoEDAL Collaboration
We update our previous search for trapped magnetic monopoles in LHC Run 2 using nearly six times more integrated luminosity and including additional models for the interpretation of the data. The MoEDAL forward trapping detector, comprising 222~kg of aluminium samples, was exposed to 2.11~fb$^{-1}$ of 13 TeV proton-proton collisions near the LHCb interaction point and analysed by searching for induced persistent currents after passage through a superconducting magnetometer. [...]
arXiv:1712.09849; CERN-EP-2017-342.- Geneva : CERN, 2018-07-10 - 7 p. - Published in : Phys. Lett. B 782 (2018) 510-516 Article from SCOAP3: PDF; Draft (restricted): PDF; Fulltext: arXiv:1712.09849 - PDF; CERN-EP-2017-342 - PDF;
4.
Search for Highly-Ionizing Particles in pp Collisions During LHC Run-2 Using the Full MoEDAL Detector / MoEDAL Collaboration
This search for Magnetic Monopoles (MMs) and High Electric Charge Objects (HECOs) with spins 0, 1/2 and 1, uses for the first time the full MoEDAL detector, exposed to 6.6 fb^-1 proton-proton collisions at 13 TeV. [...]
arXiv:2311.06509.
- 7 p.
Fulltext
5.
MoEDAL-MAPP, an LHC Dedicated Detector Search Facility / MoEDAL-MAPP Collaboration
During LHC's Run-2 the MoEDAL experiment, the LHC's first dedicated search experiment, took over 6 fb^-1 of data at IP8, with p-p and Pb-Pb collisions, operating with 100% efficiency. [...]
arXiv:2209.03988.
- 39 p.
eConf - Fulltext
6.
MoEDAL search in the CMS beam pipe for magnetic monopoles produced via the Schwinger effect / MoEDAL Collaboration
We report on a search for magnetic monopoles (MMs) produced in ultraperipheral Pb--Pb collisions during Run-1 of the LHC. The beam pipe surrounding the interaction region of the CMS experiment was exposed to 184.07 µ b$^{-1}$ of Pb--Pb collisions at 2.76 TeV center-of-mass energy per collision in December 2011, before being removed in 2013. [...]
arXiv:2402.15682.- 2024-08-15 - 7 p. - Published in : Phys. Rev. Lett. 133 (2024) 071803 Fulltext: 2402.15682 - PDF; Publication - PDF;
7.
Magnetic monopole search with the full MoEDAL trapping detector in 13 TeV $pp$ collisions interpreted in photon-fusion and Drell-Yan production / MoEDAL Collaboration
MoEDAL is designed to identify new physics in the form of stable or pseudostable highly ionizing particles produced in high-energy Large Hadron Collider (LHC) collisions. Here we update our previous search for magnetic monopoles in Run 2 using the full trapping detector with almost four times more material and almost twice more integrated luminosity. [...]
arXiv:1903.08491; CERN-EP-2019-039; IFIC/19-09; KCL-PH-TH/2019-17.- 2019-07-10 - 7 p. - Published in : Phys. Rev. Lett. 123 (2019) 021802 Article from SCOAP3: PDF; Fulltext: PDF; Fulltext from Publisher: PDF;
8.
Search for magnetic monopoles produced via the Schwinger mechanism / MoEDAL Collaboration
Schwinger showed that electrically-charged particles can be produced in a strong electric field by quantum tunnelling through the Coulomb barrier. By electromagnetic duality, if magnetic monopoles (MMs) exist, they would be produced by the same mechanism in a sufficiently strong magnetic field. [...]
arXiv:2106.11933.- 2022-02-02 - 16 p. - Published in : Nature 602 (2022) 63-67 Fulltext: PDF; External link: Physics Today article
9.
Search for magnetic monopoles with the MoEDAL forward trapping detector in 13 TeV proton-proton collisions at the LHC / The MoEDAL collaboration
MoEDAL is designed to identify new physics in the form of long-lived highly-ionising particles produced in high-energy LHC collisions. Its arrays of plastic nuclear-track detectors and aluminium trapping volumes provide two independent passive detection techniques. [...]
arXiv:1611.06817; CERN-EP-2016-282; arXiv:1611.06817.- Geneva : CERN, 2017-02-10 - 6 p. - Published in : Phys. Rev. Lett. 118 (2017) 061801 Draft (restricted): PDF; Fulltext: 10.1103_PhysRevLett.118.061801 - PDF; arXiv:1611.06817 - PDF; CERN-EP-2016-282 - PDF; External link: Preprint
10.
Determination of fission barrier height of $^{210}$Fr and $^{210}$Ra via neutron measurement / Veselský, M (IEAP CTU, Prague) ; Rubovič, P (IEAP CTU, Prague) ; Petousis, V (IEAP CTU, Prague) ; Natal da Luz, H (IEAP CTU, Prague) ; Burian, P (IEAP CTU, Prague) ; Mánek, P (IEAP CTU, Prague) ; Meduna, L (IEAP CTU, Prague) ; Smolyanskiy, P (IEAP CTU, Prague) ; Raabe, R (Leuven U.) ; Camaiani, A (Leuven U.) et al.
Fission barrier heights of short-lived nuclei away from line of β stability are not known reliably. Low-energy fission of Fr210 and Ra210, produced by (d,p) and (d,n) transfer reaction on the re-accelerated unstable beam Fr209 was investigated at HIE-ISOLDE. [...]
2024 - 6 p. - Published in : Phys. Rev. C 109 (2024) 014618 Fulltext: PDF;

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