The eccentric millisecond pulsar, PSR J0955$-$6150 I: Pulse profile analysis, mass measurements and constraints on binary evolution
M. Serylak, V. Venkatraman Krishnan, P. C. C. Freire, T. M. Tauris, M., Kramer, M. Geyer, A. Parthasarathy, M. Bailes, M. C. i Bernadich, S. Buchner,, M. Burgay, F. Camilo, A. Karastergiou, M. E. Lower, A. Possenti, D. J., Reardon, R. M. Shannon, R. Spiewak, I. H. Stairs

TL;DR
This study presents detailed observations and mass measurements of the eccentric millisecond pulsar PSR J0955$-$6150, providing new insights into its binary evolution and the formation of eccentric MSP+He WD systems.
Contribution
The paper offers the first precise mass measurements and orbital parameters for PSR J0955$-$6150, revealing discrepancies with existing formation models of eMSPs and suggesting a different evolutionary pathway.
Findings
Mass of pulsar: 1.71 solar masses
Companion mass: 0.254 solar masses
Significant spin-orbit misalignment detected
Abstract
PSR J09556150 is a member of a class of eccentric MSP+He WD systems (eMSPs), whose binary evolution is poorly understood and believed to be different to that of traditional MSP+He WD systems. Measuring the masses of the stars in this system is important for testing hypotheses for the formation of eMSPs. We have carried out observations of this pulsar with the Parkes and MeerKAT radio telescopes. Our observations reveal a strong frequency evolution of this pulsar's intensity, with a spectral index () of . The sensitivity of MeerKAT has resulted in a -fold improvement in the timing precision compared to older Parkes observations. Combined with the 8-year timing baseline, it has allowed precise measurements of a proper motion and three orbital "post-Keplerian" parameters: the rate of advance of periastron, and…
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