Multi-telescope timing of PSR J1518+4904
G.H.Janssen (1), B.W. Stappers (2,1,3), M. Kramer (3), D.J. Nice (4),, A. Jessner (5), I. Cognard (6), M.B. Purver (3). ((1)University of, Amsterdam, NL,(2)Astron, Dwingeloo, NL, (3)JBCA, University of Manchester,, UK, (4)Bryn Mawr College, USA, (5)MPIfR, Bonn, DE, (6)CNRS

TL;DR
This study improves the timing solution of the double neutron star system PSR J1518+4904 using multi-telescope data, refining relativistic parameters and mass constraints, and providing insights into its evolution.
Contribution
The paper presents an enhanced timing analysis of PSR J1518+4904 by combining data from multiple telescopes, leading to better constraints on system parameters and neutron star masses.
Findings
Refined periastron advance measurement.
Detected significant proper motion.
Constrained neutron star masses and orbit inclination.
Abstract
PSR J1518+4904 is one of only 9 known double neutron star systems. These systems are highly valuable for measuring the masses of neutron stars, measuring the effects of gravity, and testing gravitational theories. We determine an improved timing solution for a mildly relativistic double neutron star system, combining data from multiple telescopes. We set better constraints on relativistic parameters and the separate masses of the system, and discuss the evolution of PSR J1518+4904 in the context of other double neutron star systems. PSR J1518+4904 has been regularly observed for more than 10 years by the European Pulsar Timing Array (EPTA) network using the Westerbork, Jodrell Bank, Effelsberg and Nancay radio telescopes. The data were analysed using the updated timing software Tempo2. We have improved the timing solution for this double neutron star system. The periastron advance has…
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