An Optical Study of the Black Widow Population
arXiv:2211.16990 · doi:10.3847/1538-4357/aca524
Abstract
The optical study of the heated substellar companions of `Black Widow' (BW) millisecond pulsars (MSP) provides unique information on the MSP particle and radiation output and on the neutron star mass. Here we present analysis of optical photometry and spectroscopy of a set of relatively bright BWs, many newly discovered in association with Fermi -ray sources. Interpreting the optical data requires sophisticated models of the companion heating. We provide a uniform analysis, selecting the preferred heating model and reporting on the companion masses and radii, the pulsar heating power and neutron star mass. The substellar companions are substantially degenerate, with average densities Solar, but are inflated above their zero temperature radii. We find evidence that the most extreme recycled BW pulsars have both large accreted mass and low G magnetic fields. Examining a set of heavy BWs, we infer that neutron star masses larger than ( confidence) or ( confidence) are required; these bounds exclude all but the stiffest equations of state in standard tabulations.
To appear in the Astrophysical Journal
References in corpus (16)
- A Massive Pulsar in a Compact Relativistic Binary
- PSR J0952-0607: The Fastest and Heaviest Known Galactic Neutron Star
- The Green Bank Northern Celestial Cap Pulsar Survey - I: Survey Description, Data Analysis, and Initial Results
- PSR J1810+1744: Companion Darkening and a Precise High Neutron Star Mass
- Optical spectroscopy and demographics of redback millisecond pulsar binaries
- The light curve of the companion to PSR B1957+20
- A Spectroscopic Study of the Extreme Black Widow PSR J1311-3430
- Radio Detection of the Fermi LAT Blind Search Millisecond Pulsar J1311-3430
- B-ducted Heating of Black Widow Companions
- An active, asynchronous companion to a redback millisecond pulsar
- Gaia pulsars and where to find them
- 2FGL J1653.6-0159: A New Low in Evaporating Pulsar Binary Periods
- Measuring the mass of the black widow PSR J1555-2908
- Revisiting field burial by accretion onto neutron stars
- XMM-Newton Observes the Intrabinary Shock of PSR J1959+2048
- Multi-colour optical light curves of the companion star to the millisecond pulsar PSR J2051-0827
Cited by in corpus (17)
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- Tidal Deformability of Fermion-Boson Stars: Neutron Stars Admixed with Ultra-Light Dark Matter
- The Intrabinary Shock and Companion Star of Redback Pulsar J2215+5135
- Mass Distribution and Maximum Mass of Neutron Stars: Effects of Orbital Inclination Angle
- Neutron star mass in dark matter clumps
- PSR J1953+1844 probably being the descendant of an Ultra-compact X-ray binary
- A GTC spectroscopic study of three spider pulsar companions: line-based temperatures, a new face-on redback, and improved mass constraints
- The black widow pulsar J1641+8049 in the optical, radio and X-rays
- Maximal Mass Neutron Star as a Key to Superdense Matter Physics
- Convective dynamos of black widow companions
- Direct nonparametric multimessenger constraints on the equation of state of cold dense nuclear matter
- Studying the black widow pulsars PSR J03120921 and PSR J16273219 in the optical and X-rays
- Nature of 4FGL J2249.4+6229: Evidence for a redback system with a cool companion and low X-ray and -ray luminosities
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