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1.
Technical Design Report of the MoEDAL Experiment / MoEDAL Collaboration
The principal aim of the MoEDAL (Monopole and Exotics Detector at the LHC) project is to directly search for the Magnetic Monopole and other highly ionizing Stable (or pseudo-stable) Massive Particles (SMPs) at the LHC. [...]
CERN-LHCC-2009-006 ; MoEDAL-TDR-001.
- 2009. - 76 p. (Technical design report. MoEDAL ; 1)
Fulltext
2.
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;
3.
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
4.
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;
5.
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;
6.
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
7.
Search for highly-ionizing particles in $pp$ collisions at the LHC’s Run-1 using the prototype MoEDAL detector / MoEDAL Collaboration
A search for highly electrically charged objects (HECOs) and magnetic monopoles is presented using 2.2 fb-1 of p - p collision data taken at a centre of mass energy (ECM) of 8 TeV by the MoEDAL detector during LHC's Run-1. The data were collected using MoEDAL's prototype Nuclear Track Detector array and the Trapping Detector array. [...]
arXiv:2112.05806.- 2022-08-10 - 16 p. - Published in : Eur. Phys. J. C 82 (2022) 694 Fulltext: document - PDF; 2112.05806 - PDF;
8.
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
9.
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
10.
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

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