English

A Fundamental Plane for Gamma-Ray Pulsars

High Energy Astrophysical Phenomena 2019-09-25 v2

Abstract

We show that the γ\gamma-ray pulsar observables, i.e., their total γ\gamma-ray luminosity, LγL_{\gamma}, spectral cut-off energy, ϵcut\epsilon_{\rm cut}, stellar surface magnetic field, BB_{\star}, and spin-down power E˙\dot{\mathcal{E}}, obey a relation of the form Lγ=f(ϵcut,B,E˙)L_{\gamma}=f(\epsilon_{\rm cut},B_{\star},\dot{\mathcal{E}}), which represents a 3D plane in their 4D log-space. Fitting the data of 88 pulsars of the second Fermi pulsar catalog, we show this relation to be Lγϵcut1.18±0.24B0.17±0.05E˙0.41±0.08L_{\gamma}\propto \epsilon_{\rm cut}^{1.18\pm 0.24}B_{\star}^{0.17\pm 0.05}\dot{\mathcal{E}}^{0.41\pm 0.08}, a pulsar fundamental plane (FP). We show that the observed FP is remarkably close to the theoretical relation Lγϵcut4/3B1/6E˙5/12L_{\gamma}\propto \epsilon_{\rm cut}^{4/3}B_{\star}^{1/6}\dot{\mathcal{E}}^{5/12} obtained assuming that the pulsar γ\gamma-ray emission is due to curvature radiation by particles accelerated at the pulsar equatorial current sheet just outside the light cylinder. Interestingly, the FP seems incompatible with emission by synchrotron radiation. The corresponding scatter about the FP is 0.35\sim 0.35dex and can only partly be explained by the observational errors while the rest is probably due to the variation of the inclination and observer angles. We predict also that ϵcutE˙7/16\epsilon_{\rm cut}\propto \dot{\mathcal{E}}^{7/16} toward low E˙\dot{\mathcal{E}} for both young and millisecond pulsars implying that the observed death-line of γ\gamma-ray pulsars is due to ϵcut\epsilon_{\rm cut} dropping below the Fermi-band. Our results provide a comprehensive interpretation of the observations of γ\gamma-ray pulsars, setting requirement for successful theoretical modeling.

Keywords

Cite

@article{arxiv.1904.01765,
  title  = {A Fundamental Plane for Gamma-Ray Pulsars},
  author = {Constantinos Kalapotharakos and Alice K. Harding and Demosthenes Kazanas and Zorawar Wadiasingh},
  journal= {arXiv preprint arXiv:1904.01765},
  year   = {2019}
}

Comments

8 pages, 6 figures, accepted for publication in ApJL

R2 v1 2026-06-23T08:27:36.266Z