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2020MNRAS.493.1261N - Mon. Not. R. Astron. Soc., 493, 1261-1267 (2020/March-3)

A Shapiro delay detection in the pulsar binary system PSR J1811-2405.

NG C., GUILLEMOT L., FREIRE P.C.C., KRAMER M., CHAMPION D.J., COGNARD I., THEUREAU G. and BARR E.D.

Abstract (from CDS):

This paper presents the first detection of Shapiro delay from the binary millisecond pulsar PSR J1811-2405. We report a 11σ measurement of the orthometric amplitude, h3 = 6.8(6) x 10-7, and a 16σ measurement of the orthometric ratio, s = 0.81(5). Given the relatively high orbital inclination, i = 79(2)°, of this binary system, we obtain constraints on the companion mass of mc=0.31+0.08–0.06 M. The pulsar mass is currently less well constrained, with a value of 2.0+0.8–0.5 M. The companion mass and the orbital period are in agreement with the prediction made by previous numerical calculations of the evolution of compact binary systems. From a study of the polarization, we find that the orbital inclination angle is ∼100° and that PSR J1811-2405 is an orthogonal rotator. In addition, the µs-level timing precision together with its narrow profile makes PSR J1811-2405 a good candidate for inclusion in the pulsar timing arrays being used to detect nHz gravitational waves.

Abstract Copyright: © 2020 The Author(s) Published by Oxford University Press on behalf of the Royal Astronomical Society

Journal keyword(s): stars: neutron - pulsars: binaries - pulsars: individual: PSR J1811-2405

Simbad objects: 6

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