An Overview of Compact Star Populations and Some of Its Open Problems
arXiv:2301.07780 · doi:10.3390/galaxies11010019
Abstract
The study of compact object populations has come a long way since the determination of the mass of the Hulse-Taylor pulsar, and we now count on more than 150 known Galactic neutron stars and black hole masses, as well as another 180 objects from binary mergers detected from gravitational-waves by the Ligo-Virgo-KAGRA Collaboration. With a growing understanding of the variety of systems that host these objects, their formation, evolution and frequency, we are now in a position to evaluate the statistical nature of these populations, their properties, parameter correlations and long-standing problems, such as the maximum mass of neutron stars and the black hole lower mass gap, to a reasonable level of statistical significance. Here, we give an overview of the evolution and current state of the field and point to some of its standing issues. We focus on Galactic black holes, and offer an updated catalog of 35 black hole masses and orbital parameters, as well as a standardized procedure for dealing with uncertainties.
39 pages, 12 figures, 3 tables. Published in the Galaxies Special Issue "Challenges of This Century in High-Density Compact Objects, High-Energy Astrophysics, and Multi-Messenger Observations. Quo Vadis?"
References in corpus (46)
- A NICER View of PSR J0030+0451: Millisecond Pulsar Parameter Estimation
- Constraining the Maximum Mass of Neutron Stars From Multi-Messenger Observations of GW170817
- PSR J0952-0607: The Fastest and Heaviest Known Galactic Neutron Star
- A 15.65 solar mass black hole in an eclipsing binary in the nearby spiral galaxy Messier 33
- A Sun-like star orbiting a black hole
- A wide star-black-hole binary system from radial-velocity measurements
- The Explosion of Helium Stars Evolved With Mass Loss
- Discovery of a radio emitting neutron star with an ultra-long spin period of 76 seconds
- A radio transient with unusually slow periodic emission
- An isolated mass gap black hole or neutron star detected with astrometric microlensing
- A radio parallax to the black hole X-ray binary MAXI J1820+070
- The binary mass ratio in the black hole transient MAXI J1820+070
- The mass function of GX 339-4 from spectroscopic observations of its donor star
- Central Compact Objects in Supernova Remnants
- Recent Progress on Anomalous X-ray Pulsars
- Polarimetric evidence of a white dwarf pulsar in the binary system AR Scorpii
- Estimation of Mass of Compact Object in H 1743-322 from 2010 and 2011 Outbursts using TCAF Solution and Spectral Index - QPO Frequency Correlation
- M 33 X-7: ChASeM33 reveals the first eclipsing black hole X-ray binary
- The Effect of Supernova Convection On Neutron Star and Black Hole Masses
- Impact of large-mass constraints on the properties of neutron stars
- Evidence for an abundant old population of Galactic ultra long period magnetars and implications for fast radio bursts
- Systematic errors as a source of mass discrepancy in black hole microlensing event OGLE-2011-BLG-0462
- Discovery of an Isolated Compact Object at High Galactic Latitude
- The Eccentric Accretion Disc of the Black Hole A0620-00
- Chemical Abundances of the Secondary Star in the Black Hole X-ray Binary XTE J1118+480
- The role of supernova convection for the lower mass gap in the isolated binary formation of gravitational wave sources
- The Black Hole Binary Nova Scorpii 1994 (GRO J1655-40): An improved chemical analysis
- Hard-state optical wind during the discovery outburst of the black-hole X-ray dipper MAXI J1803-298
- The SUrvey for Pulsars and Extragalactic Radio Bursts IV: Discovery and polarimetry of a 12.1-second radio pulsar
- The First Simultaneous X-Ray/Radio Detection of the First Be/BH System MWC 656
- Inferring the neutron star maximum mass and lower mass gap in neutron star-black hole systems with spin
- Discovery of orbital Eccentricity and Evidence for orbital Period Increase of SS433
- A population study of type II bursts in the Rapid Burster
- X-ray bounds on cooling, composition, and magnetic field of the Cassiopeia A neutron star and young central compact objects
- Formation of millisecond pulsars with long orbital periods by accretion-induced collapse of white-dwarfs
- Modelling a Compact Star with Quark Matter
- Long-term evolution of dim isolated neutron stars
- Delimiting the black hole mass in the X-ray transient MAXI J1659-152 with H spectroscopy
- A kinematic study of central compact objects and their host supernova remnants
- The Wolf-Rayet + Black Hole Binary NGC 300 X-1: What is the Mass of the Black Hole?
- Spectral evidence of an accretion disk in wind-fed X-ray pulsar Vela X-1 during an unusual spin-up period
- A broadband radio study of PSR J0250+5854: the slowest-spinning radio pulsar known
- An optical spectroscopic and polarimetric study of the microquasar binary system SS 433
- Quantifying the evidence against a mass gap between black holes and neutron stars
- The maximum mass of neutron stars may be higher than expected: an inference from binary systems
- Effects of a non-universal IMF and binary parameter correlations on compact binary mergers
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- Mass Distribution and Maximum Mass of Neutron Stars: Effects of Orbital Inclination Angle
- The mass of the neutron star in 4U 1820-30 revisited