A characteristic observable signature of preferred frame effects in relativistic binary pulsars
N. Wex, M. Kramer (University of Manchester, Jodrell Bank Centre for, Astrophysics)

TL;DR
This paper develops a new timing model for binary pulsars to detect preferred-frame effects, enabling tests of Lorentz invariance violations in strong gravitational fields, with promising future observational prospects.
Contribution
It introduces a phenomenological methodology and an extended timing formula to measure or constrain preferred-frame effects in relativistic binary pulsars, especially using the Double Pulsar system.
Findings
Current data limits on PFE parameters are less strict than existing bounds.
Simulations indicate constraints will improve rapidly with future observations.
A proposed PFE antenna array could detect the preferred frame's direction.
Abstract
In this paper we develop a consistent, phenomenological methodology to measure preferred-frame effects (PFEs) in binary pulsars that exhibit a high rate of periastron advance. We show that in these systems the existence of a preferred frame for gravity leads to an observable characteristic `signature' in the timing data, which uniquely identifies this effect. We expand the standard Damour-Deruelle timing formula to incorporate this `signature' and show how this new PFE timing model can be used to either measure or constrain the parameters related to a violation of the local Lorentz invariance of gravity in the strong internal fields of neutron stars. In particular, we demonstrate that in the presence of PFEs we expect a set of the new timing parameters to have a unique relationship that can be measured and tested incontrovertibly. This new methodology is applied to the Double Pulsar,…
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