Literature DB >> 31707957

Monopole-antimonopole pair production by magnetic fields.

Arttu Rajantie1.   

Abstract

Quantum electrodynamics predicts that in a strong electric field, electron-positron pairs are produced by the Schwinger process, which can be interpreted as quantum tunnelling through the Coulomb potential barrier. If magnetic monopoles exist, monopole-antimonopole pairs would be similarly produced in strong magnetic fields by the electromagnetic dual of this process. The production rate can be computed using semiclassical techniques without relying on perturbation theory, and therefore it can be done reliably in spite of the monopoles' strong coupling to the electromagnetic field. This article explains this phenomenon and discusses the bounds on monopole masses arising from the strongest magnetic fields in the universe, which are in neutron stars known as magnetars and in heavy ion collision experiments such as lead-lead collisions carried out in November 2018 in the large Hadron collider at CERN. It will also discuss open theoretical questions affecting the calculation. This article is part of a discussion meeting issue 'Topological avatars of new physics'.

Keywords:  heavy ion collision; magnetic monopole; particle production

Year:  2019        PMID: 31707957      PMCID: PMC6863478          DOI: 10.1098/rsta.2019.0333

Source DB:  PubMed          Journal:  Philos Trans A Math Phys Eng Sci        ISSN: 1364-503X            Impact factor:   4.226


  2 in total

1.  Magnetic Monopole Search with the Full MoEDAL Trapping Detector in 13 TeV pp Collisions Interpreted in Photon-Fusion and Drell-Yan Production.

Authors:  B Acharya; J Alexandre; S Baines; P Benes; B Bergmann; J Bernabéu; A Bevan; H Branzas; M Campbell; S Cecchini; Y M Cho; M de Montigny; A De Roeck; J R Ellis; M El Sawy; M Fairbairn; D Felea; M Frank; J Hays; A M Hirt; J Janecek; D-W Kim; A Korzenev; D H Lacarrère; S C Lee; C Leroy; G Levi; A Lionti; J Mamuzic; A Margiotta; N Mauri; N E Mavromatos; P Mermod; M Mieskolainen; L Millward; V A Mitsou; R Orava; I Ostrovskiy; J Papavassiliou; B Parker; L Patrizii; G E Păvălaş; J L Pinfold; V Popa; M Pozzato; S Pospisil; A Rajantie; R Ruiz de Austri; Z Sahnoun; M Sakellariadou; A Santra; S Sarkar; G Semenoff; A Shaa; G Sirri; K Sliwa; R Soluk; M Spurio; M Staelens; M Suk; M Tenti; V Togo; J A Tuszyński; V Vento; O Vives; Z Vykydal; A Wall; I S Zgura
Journal:  Phys Rev Lett       Date:  2019-07-12       Impact factor: 9.161

2.  Magnetic Monopole Mass Bounds from Heavy-Ion Collisions and Neutron Stars.

Authors:  Oliver Gould; Arttu Rajantie
Journal:  Phys Rev Lett       Date:  2017-12-12       Impact factor: 9.161

  2 in total

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