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Total gravitational mass of the Galactic Double Neutron Star systems: evidence for a bimodal distribution

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arxiv 1804.03101 v1 pith:PMDGBNWE submitted 2018-04-09 astro-ph.HE gr-qc

classification astro-ph.HEgr-qc
keywords distributionneutrondoublemassodotgaussianstarstars
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abstract

So far, in total 15 double neutron star systems (DNSs) with a reliable measurement of the total gravitational mass ($M_{\rm T}$) have been detected in the Galaxy. In this work we study the distribution of $M_{\rm T}$. The data prefer the double Gaussian distribution over a single Gaussian distribution and the low and high mass populations center at $M_{\rm T}\sim 2.58M_\odot$ and $\sim 2.72M_\odot$, respectively. The progenitor stars of GW170817 have a $M_{\rm T}=2.74^{+0.04}_{-0.01}M_\odot$, falling into the high mass population. With a local neutron star merger rate of $\sim 10^{3}~{\rm Gpc^{-3}~yr^{-1}}$, supposing the $M_{\rm T}$ of those merging neutron stars also follow the double Gaussian distribution, the upcoming runs of the advanced LIGO/Virgo will soon detect some events with a $M_{\rm T}\lesssim 2.6M_\odot$ that can effectively probe the equation of state of the neutron stars and the distribution function is expected to be reliably reconstructed in the next decade.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Spin evolution and mass distribution of the Galactic Binary Neutron Stars

    astro-ph.HE 2024-12 conditional novelty 5.0 of 10

    A population synthesis model with detailed neutron star spin evolution reproduces the observed Galactic binary neutron star population and explains why heavy systems like GW190425 are rarely seen in radio surveys.

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