X-ray Through Very-High-Energy Intrabinary Shock Emission from Black Widows and Redbacks
arXiv:2010.01125 · doi:10.3847/1538-4357/abbdfb
Abstract
Black widow and redback systems are compact binaries in which a millisecond pulsar heats and may even ablate its low-mass companion by its intense wind of relativistic particles and radiation. In such systems, an intrabinary shock can form as a site of particle acceleration and associated non-thermal emission. We model the X-ray and gamma-ray synchrotron and inverse-Compton spectral components for select spider binaries, including diffusion, convection and radiative energy losses in an axially-symmetric, steady-state approach. Our new multi-zone code simultaneously yields energy-dependent light curves and orbital phase-resolved spectra. Using parameter studies and matching the observed X-ray spectra and light curves, and Fermi Large Area Telescope spectra where available, with a synchrotron component, we can constrain certain model parameters. For PSR J1723--2837 these are notably the magnetic field and bulk flow speed of plasma moving along the shock tangent, the shock acceleration efficiency, and the multiplicity and spectrum of pairs accelerated by the pulsar. This affords a more robust prediction of the expected high-energy and very-high-energy gamma-ray flux. We find that nearby pulsars with hot or flaring companions may be promising targets for the future Cherenkov Telescope Array. Moreover, many spiders are likely to be of significant interest to future MeV-band missions such as AMEGO and e-ASTROGAM.
29 pages, 19 figures, accepted to The Astrophysical Journal
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- The Emission Physics of Millisecond Pulsars
- Gamma-ray Eclipses and Orbital Modulation Transitions in the Candidate Redback 4FGL J1702.7-5655
- Green Bank Telescope Discovery of the Redback Binary Millisecond Pulsar PSR J0212+5321
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- The neutron star population in M28: a joint Chandra/GBT look at pulsar paradise
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- Absence of TeV halos around millisecond pulsars
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- Hydrodynamical simulations of wind interaction in spider systems : A step toward understanding transitional millisecond pulsars
- A puzzling 2-hour X-ray periodicity in the 1.5-hour orbital period black widow PSR J1311-3430
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- The Spider Stellar Engine: a Fully Steerable Extraterrestrial Design?
- Very high-energy gamma-ray and neutrino emission from hadronic interaction in compact binary millisecond pulsars
- Global Kinetic Modeling of the Intrabinary Shock in Spider Pulsars
- "Spider" Millisecond Pulsar Binaries as Potential TeV Emitters
- Search for TeV emission from spider millisecond pulsars with HAWC
- Searching for Spider-Like Pulsars from TESS Ellipsoidal Lightcurves with X-ray counterparts