FRB 121102 Casts New Light on the Photon Mass
arXiv:1701.03097 · doi:10.1016/j.physletb.2017.03.014
Abstract
The photon mass, , can in principle be constrained using measurements of the dispersion measures (DMs) of fast radio bursts (FRBs), once the FRB redshifts are known. The DM of the repeating FRB 121102 is known to \%, a host galaxy has now been identified with high confidence,and its redshift, , has now been determined with high accuracy: . Taking into account the plasma contributions to the DM from the Intergalactic medium (IGM) and the Milky Way, we use the data on FRB 121102 to derive the constraint eV c ( kg). Since the plasma and photon mass contributions to DMs have different redshift dependences, they could in principle be distinguished by measurements of more FRB redshifts, enabling the sensitivity to to be improved.
9 pages, 1 figure, version to appear in PLB
References in corpus (8)
- The direct localization of a fast radio burst and its host
- The Host Galaxy and Redshift of the Repeating Fast Radio Burst FRB 121102
- Lorentz-violation-induced arrival delays of cosmological particles
- Massive photons from Super and Lorentz symmetry breaking
- Dispersion by pulsars, magnetars, fast radio bursts and massive electromagnetism at very low radio frequencies
- New Limits on the Photon Mass with Radio Pulsars in the Magellanic Clouds
- Erratum (astro-ph/0510172): Robust Limits on Lorentz Violation from Gamma-Ray Bursts
- Photon: history, mass, charge
Cited by in corpus (9)
- A Bayesian Framework to Constrain the Photon Mass with a Catalog of Fast Radio Bursts
- The Heisenberg limit at cosmological scales
- Investigating dark energy by electromagnetic frequency shifts
- Frequency variation for in vacuo photon propagation in the Standard-Model Extension
- Fast radio burst detection in the presence of coloured noise
- Bounding the Photon Mass with Ultrawide Bandwidth Pulsar Timing Data and Dedispersed Pulses of Fast Radio Bursts
- Thermal effects of Very Special Relativity Quantum Electrodynamics
- Tree-level processes in very special relativity
- Vacuum Radiation in Lifshitz QED