SIMBAD references

2018MNRAS.475.3644G - Mon. Not. R. Astron. Soc., 475, 3644-3653 (2018/April-2)

A dynamical approach in exploring the unknown mass in the Solar system using pulsar timing arrays.

GUO Y.J., LEE K.J. and CABALLERO R.N.

Abstract (from CDS):

The error in the Solar system ephemeris will lead to dipolar correlations in the residuals of pulsar timing array for widely separated pulsars. In this paper, we utilize such correlated signals, and construct a Bayesian data-analysis framework to detect the unknown mass in the Solar systemand to measure the orbital parameters. The algorithm is designed to calculate the waveform of the induced pulsar-timing residuals due to the unmodelled objects following the Keplerian orbits in the Solar system. The algorithm incorporates a Bayesian-analysis suit used to simultaneously analyse the pulsar-timing data of multiple pulsars to search for coherent waveforms, evaluate the detection significance of unknown objects, and to measure their parameters. When the object is not detectable, our algorithm can be used to place upper limits on the mass. The algorithm is verified using simulated data sets, and cross-checked with analytical calculations. We also investigate the capability of future pulsar-timing-array experiments in detecting the unknown objects. We expect that the future pulsar-timing data can limit the unknown massive objects in the Solar system to be lighter than 10–11-10–12 M, or measure the mass of Jovian system to a fractional precision of 10–8-10–9.

Abstract Copyright: © 2017 The Author(s) Published by Oxford University Press on behalf of the Royal Astronomical Society

Journal keyword(s): methods: data analysis - minor planets, asteroids: general - pulsars: general

Simbad objects: 5

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