Synchrotron radiation of vector bosons at relativistic colliders
arXiv:1407.2509 · doi:10.1103/PhysRevD.91.033004
Abstract
Magnetic fields produced in collisions of electrically charged particles at relativistic energies are strong enough to affect the dynamics of the strong interactions. In particular, it induces radiation of vector bosons by relativistic fermions. To develop deeper insight into this problem, I calculate the corresponding spectrum in constant magnetic field and analyze its angular distribution and mass dependence. As an application, I consider synchrotron radiation of virtual photon by the quark-gluon plasma.
13 pages, 6 figures, V2: a couple of errors fixed
References in corpus (8)
- Physics of Strongly Magnetized Neutron Stars
- Magnetohydrodynamics, charged currents and directed flow in heavy ion collisions
- Electromagnetic radiation from nuclear collisions at RHIC energies
- Electromagnetic radiation by quark-gluon plasma in magnetic field
- Photon decay in strong magnetic field in heavy-ion collisions
- Electromagnetic response of quark-gluon plasma in heavy-ion collisions
- On the role of magnetic field in photon excess in heavy ion collisions
- Pair creation by a photon in a strong magnetic field
Cited by in corpus (3)
- Electromagnetic fields and anomalous transports in heavy-ion collisions --- A pedagogical review
- Novel quantum phenomena induced by strong magnetic fields in heavy-ion collisions
- Revisit to electrical and thermal conductivities, Lorenz number and Knudsen number in thermal QCD in a strong magnetic field