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Related papers: The Galactic Double-Neutron-Star Merger Rate: Most…

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We have implemented prescriptions for modelling pulsars in the rapid binary population synthesis code COMPAS. We perform a detailed analysis of the double neutron star (DNS) population, accounting for radio survey selection effects. The…

High Energy Astrophysical Phenomena · Physics 2020-04-22 Debatri Chattopadhyay , Simon Stevenson , Jarrod R. Hurley , Luca J. Rossi , Chris Flynn

In this work, we compute rates of merging neutron stars (MNS) in galaxies of different morphological type, as well as the cosmic MNS rate in a unitary volume of the Universe adopting different cosmological scenarios. Our aim is to provide…

Astrophysics of Galaxies · Physics 2021-02-01 Marta Molero , Paolo Simonetti , Francesca Matteucci , Massimo della Valle

We constrain the uncertainty in waiting times for detecting the first double-neutron-star (DNS) mergers by gravitational wave observatories. By accounting for the Poisson fluctuations in the rate density of DNS mergers and galaxy space…

Astrophysics · Physics 2011-05-09 D. M. Coward

We present an analysis method that allows us to estimate the Galactic formation of radio pulsar populations based on their observed properties and our understanding of survey selection effects. More importantly, this method allows us to…

Astrophysics · Physics 2007-05-23 Vassiliki Kalogera , Chunglee Kim , Duncan R. Lorimer

Proposed third generation gravitational wave (GW) interferometers such as Cosmic Explorer will have the sensitivity to observe double neutron star (DNS) mergers up to a redshift of $\sim 5$ with good signal to noise ratios. We argue that…

General Relativity and Quantum Cosmology · Physics 2020-06-16 Shilpa Kastha , M. Saleem , K G Arun

The mergers of double neutron stars (DNSs) systems are believed to drive the majority of short $\gamma$-ray bursts (SGRBs), while also serving as production sites of heavy r-process elements. Despite being key to i) confirming the nature of…

High Energy Astrophysical Phenomena · Physics 2024-05-08 Hao Ding , Adam T. Deller , Joseph K. Swiggum , Ryan S. Lynch , Shami Chatterjee , Thomas M. Tauris

More than 30 Galactic double neutron star (DNS) binaries have now been identified through radio pulsar timing. The 24 DNSs in the Galactic field with measured total masses lie in the narrow range of 2.3--2.9 $M_{\odot}$. In contrast,…

High Energy Astrophysical Phenomena · Physics 2025-08-22 Ashwathi Nair , Simon Stevenson

The Multimessenger discovery of the merger of two neutron stars on August 17, 2017, GW170817 / GRB170817A, accompanied by a gamma-ray burst and an optical kilonova, is a triumph of the ideas about the evolution of the baryon component in…

High Energy Astrophysical Phenomena · Physics 2018-05-15 Vladimir Lipunov , Victor Kornilov , Evgeny Gorbovskoy , Galina Lipunova , Daniil Vlasenko , I. Panchenko , N. V. Tyurina , V. Grinshpun

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…

High Energy Astrophysical Phenomena · Physics 2018-04-11 Yong-Jia Huang , Jin-Liang Jiang , Xiang Li , Zhi-Ping Jin , Yi-Zhong Fan , Da-Ming Wei

The first neutron star-neutron star (NS-NS) merger was discovered on August 17, 2017 through gravitational waves (GW170817) and followed with electromagnetic observations. This merger was detected in an old elliptical galaxy with no recent…

High Energy Astrophysical Phenomena · Physics 2018-08-01 K. Belczynski , A. Askar , M. Arca-Sedda , M. Chruslinska , M. Donnari , M. Giersz , M. Benacquista , R. Spurzem , D. Jin , G. Wiktorowicz , D. Belloni

In the context of assessing the detectability of the coalescence of two neutron stars (NS) by currently built gravitational-wave experiments, we present a way of obtaining an upper limit to the coalescence rate in the Galaxy. We consider…

Astrophysics · Physics 2009-10-31 Vassiliki Kalogera , Duncan Lorimer

Radio pulsar observations probe the lives of Galactic double neutron-star (DNS) systems while gravitational waves enable us to study extragalactic DNS in their final moments. By combining measurements from radio and gravitational-wave…

High Energy Astrophysical Phenomena · Physics 2021-04-09 Shanika Galaudage , Christian Adamcewicz , Xing-Jiang Zhu , Simon Stevenson , Eric Thrane

We estimate the properties of the double neutron star (DNS) population that will be observable by the planned space-based interferometer LISA. By following the gravitational radiation driven evolution of DNSs generated from rapid population…

High Energy Astrophysical Phenomena · Physics 2020-01-22 Mike Y. M. Lau , Ilya Mandel , Alejandro Vigna-Gómez , Coenraad J. Neijssel , Simon Stevenson , Alberto Sesana

We present a study of the merger of six different known galactic systems of binary neutron stars (BNS) of unequal mass with a mass ratio between $0.75$ and $0.99$. Specifically, these systems are J1756-2251, J0737-3039A, J1906+0746,…

General Relativity and Quantum Cosmology · Physics 2017-01-18 Alessandra Feo , Roberto De Pietri , Francesco Maione , Frank Löffler

We use the rapid binary stellar evolution code BINARY_C to estimate the rate of merging neutron stars with numerous combinations of envelope ejection efficiency and natal kick dispersion. We find a peak in the local rate of merging neutron…

High Energy Astrophysical Phenomena · Physics 2023-04-28 Alexander M. Tanaka , Avishai Gilkis , Robert G. Izzard , Christopher A. Tout

The formation and evolution of double neutron stars (DNS) have traditionally been studied using binary population synthesis. In this work, we take an alternative approach by focusing only on the second supernova (SN) forming the DNS and the…

High Energy Astrophysical Phenomena · Physics 2019-04-24 Jeff J. Andrews , Andreas Zezas

The rate and location of Binary Neutron Star (BNS) mergers are determined by a combination of the star formation history and the Delay Time Distribution (DTD) function. In this paper, we couple the star formation rate histories (SFRHs) from…

High Energy Astrophysical Phenomena · Physics 2021-03-31 Jonah C. Rose , Paul Torrey , K. H. Lee , I. Bartos

Neutron star mergers have been long considered as promising sites of heavy $r$-process nucleosynthesis. We overview observational evidence supporting this scenario including: the total amount of $r$-process elements in the Galaxy, extreme…

High Energy Astrophysical Phenomena · Physics 2018-10-17 Kenta Hotokezaka , Paz Beniamini , Tsvi Piran

The merger locations of binary neutron stars (BNSs) encode their galactic kinematics and provide insights into their connection to short gamma-ray bursts (SGRBs). In this work, we use the sample of Galactic BNSs with measured proper motions…

High Energy Astrophysical Phenomena · Physics 2023-10-24 Nicola Gaspari , Andrew J. Levan , Ashley A. Chrimes , Gijs Nelemans

The first neutron star-neutron star merger was detected in by LIGO/Virgo in a galaxy in which the majority of star formation was taking place a long time ago (11 Gyr). LIGO/Virgo estimated that local cosmic NS-NS merger rate is 110-3840…