Instanton solution for Schwinger production of 't Hooft-Polyakov monopoles
arXiv:2103.12799 · doi:10.1103/PhysRevD.103.115033
Abstract
We present the results of an explicit numerical computation of a novel instanton in Georgi-Glashow SU(2) theory. The instanton is physically relevant as a mediator of Schwinger production of 't Hooft-Polyakov magnetic monopoles from strong magnetic fields. In weak fields, the pair production rate has previously been computed using the worldline approximation, which breaks down in strong fields due to the effects of finite monopole size. Using lattice field theory we have overcome this limit, including finite monopole size effects to all orders. We demonstrate that a full consideration of the internal monopole structure results in an enhancement to the pair production rate, and confirm earlier results that monopole production becomes classical at the Ambjorn-Olesen critical field strength.
9 pages, 4 figures; corrected sign error in Eq. (2)
References in corpus (3)
Cited by in corpus (9)
- Advances in QED with intense background fields
- First experimental search for production of magnetic monopoles via the Schwinger mechanism
- Opportunities for new physics searches with heavy ions at colliders
- Schwinger pair production of magnetic monopoles: momentum distribution for heavy-ion collisions
- Experimental targets for dark photon dark matter
- Creating kinks with quantum mediation
- The next frontiers for magnetic monopole searches
- On the issue of magnetic monopoles in the prospect of UHE photon searches
- Pair production of magnetic monopoles and stable high-electric-charge objects in proton-proton and heavy-ion collisions