A Highly Eccentric 3.9-Millisecond Binary Pulsar in the Globular Cluster NGC 6652
Abstract
We present the Robert C. Byrd Green Bank Telescope discovery of the highly eccentric binary millisecond pulsar PSR J18353259A in the Fermi Large Area Telescope-detected globular cluster NGC 6652. Timing over one orbit yields the pulse period 3.89 ms, orbital period 9.25 d, eccentricity , and an unusually high companion mass of assuming a pulsar. We caution that the lack of data near periastron prevents a precise measurement of the eccentricity, and that further timing is necessary to constrain this and the other orbital parameters. From tidal considerations, we find that the companion must be a compact object. This system likely formed through an exchange encounter in the dense cluster environment. Our initial timing results predict the measurements of at least two post-Keplerian parameters with long-term phase-connected timing: the rate of periastron advance yr, requiring 1 yr of phase connection; and the Einstein delay ms, requiring 2-3 yr of timing. For an orbital inclination , a measurement of is also likely. PSR J18353259A thus provides an opportunity to measure the neutron star mass with high precision; to probe the cluster environment; and, depending on the nature of the companion, to investigate the limits of general relativity.
Keywords
Cite
@article{arxiv.1506.03367,
title = {A Highly Eccentric 3.9-Millisecond Binary Pulsar in the Globular Cluster NGC 6652},
author = {Megan E. DeCesar and Scott M. Ransom and David L. Kaplan and Paul S. Ray and Aaron M. Geller},
journal= {arXiv preprint arXiv:1506.03367},
year = {2015}
}
Comments
Accepted by ApJ Letters; 7 pages, 3 tables, 2 figures