2019
DOI: 10.1140/epjc/s10052-019-6678-7
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Erratum to: Monopole production via photon fusion and Drell–Yan processes: MadGraph implementation and perturbativity via velocity-dependent coupling and magnetic moment as novel features

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Cited by 12 publications
(25 citation statements)
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“…But these virtual photons are composed entirely of math and exist only to fill the gaps in physics such as the origin of the magnetic force. Furthermore, the Grand Unified Theories predict the existence of magnetic monopoles [18]- [25]. Monopoles have never been observed.…”
Section: Introductionmentioning
confidence: 99%
“…But these virtual photons are composed entirely of math and exist only to fill the gaps in physics such as the origin of the magnetic force. Furthermore, the Grand Unified Theories predict the existence of magnetic monopoles [18]- [25]. Monopoles have never been observed.…”
Section: Introductionmentioning
confidence: 99%
“…The process is dominant for masses up to 5.5 TeV, and the cross sections decays rapidly for > 4 TeV. The results in [13] point out that the total cross sections increase with the parameter , and the same behavior is achieved for the entire mass range. The cross section for = 3 is up to 10 2 times higher than the one for = 0 only in photon fusion and around 10 times higher in Drell Yan.…”
Section: Results and Conclusionmentioning
confidence: 62%
“…Since assumes values from 0 to 1, the coupling can only be expanded perturbatively for slowly moving monopoles, when < 1. A more recent model [13] proposes an addition of a magnetic moment dependence in the velocity dependent coupling. This dependence is given in terms of a parameter , inserted in the magnetic moment of a monopole…”
Section: Magnetic Couplingsmentioning
confidence: 99%
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“…In ref. [9], the results of which are highlighted here, effective field theoretical models to obtain production mechanisms were considered based on electric-magnetic duality, i.e. on the replacement of the electric charge q e by the magnetic charge g, the latter obeying Dirac's quantisation rule: gq e = 2πn, n ∈ Z.…”
Section: Introductionmentioning
confidence: 99%