Radiative reconnection-powered TeV flares from the black hole magnetosphere in M87
arXiv:2209.02105 · doi:10.3847/2041-8213/acb264
Abstract
Active Galactic Nuclei in general, and the supermassive black hole in M87 in particular, show bright and rapid gamma-ray flares up to energies of 100 GeV and above. For M87, the flares show multiwavelength components, and the variability timescale is comparable to the dynamical time of the event horizon, suggesting that the emission may come from a compact region nearby the nucleus. However, the emission mechanism for these flares is not well understood. Recent high-resolution general-relativistic magnetohydrodynamic simulations show the occurrence of episodic magnetic reconnection events that can power flares nearby the black hole event horizon. In this work, we analyze the radiative properties of the reconnecting current layer under the extreme plasma conditions applicable to the black hole in M87 from the first principles. We show that abundant pair production is expected in the vicinity of the reconnection layer, to the extent that the produced secondary pair plasma dominates the reconnection dynamics. Using analytic estimates backed by two-dimensional particle-in-cell simulations we demonstrate that in the presence of strong synchrotron cooling, reconnection can produce a hard power-law distribution of pair plasma imprinted in the outgoing synchrotron (up to a few tens of MeV) and the inverse-Compton signal (up to TeV). We produce synthetic radiation spectra from our simulations, which can be directly compared with the results of future multiwavelength observations of M87* flares.
16 pages, 5 figures, 1 table
References in corpus (10)
- Formation of Hard Power-laws in the Energetic Particle Spectra Resulting from Relativistic Magnetic Reconnection
- Fast variability of TeV gamma-rays from the radio galaxy M 87
- Black hole flares: ejection of accreted magnetic flux through 3D plasmoid-mediated reconnection
- Analytical solutions for energy spectra of electrons accelerated by nonrelativistic shock-waves in shell type supernova remnants
- Black hole lightning due to particle acceleration at subhorizon scales
- Variable TeV emission as a manifestation of jet formation in M87?
- Magnetic Hair and Reconnection in Black Hole Magnetospheres
- Pair Drizzle around Sub-Eddington Supermassive Black Holes
- Radiation GRMHD simulations of M87: funnel properties and prospects for gap acceleration
- The response of black hole spark gaps to external changes: A production mechanism of rapid TeV flares?
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- High-energy synchrotron flares powered by strongly radiative relativistic magnetic reconnection: 2D and 3D PIC simulations
- M87: a cosmic laboratory for deciphering black hole accretion and jet formation
- Effective resistivity in relativistic collisionless plasmoid-mediated reconnection
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- Detection of very high-energy gamma-ray emission from the radio galaxy M87 with LHAASO
- Chaotic magnetic disconnections trigger flux eruptions in accretion flows channeled onto magnetically saturated Kerr black holes
- Decoupling of a supermassive black hole binary from its magnetically arrested circumbinary accretion disk
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- Hadronic Processes, Plasma Evolution and Neutrino Emission in Magnetic Towers of Neutron-Star Merger Remnants
- Tension of toroidal magnetic field in reconnection plasmoids and relativistic jets
- Explaining the Origin of TeV Gamma Rays from M87 During High and Low States
- On the universality of the split monopole black hole magnetosphere
- Probing the disk-jet coupling in M87
- Nonuniform Particle Injection into Black Hole Jets by Radiative Magnetic Reconnection
- Driven Collisionless Reconnection of Force-free Flux Tubes: From Onset to Coalescence
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- Electromagnetic Precursors to Binary Neutron Star Mergers: Kinetic Simulations of Magnetospheric Flaring