Temporal signatures of leptohadronic feedback mechanisms in compact sources
arXiv:1201.2091 · doi:10.1111/j.1365-2966.2012.20460.x
Abstract
The hadronic model of Active Galactic Nuclei and other compact high energy astrophysical sources assumes that ultra-relativistic protons, electron-positron pairs and photons interact via various hadronic and electromagnetic processes inside a magnetized volume, producing the multiwavelength spectra observed from these sources. A less studied property of such systems is that they can exhibit a variety of temporal behaviours due to the operation of different feedback mechanisms. We investigate the effects of one possible feedback loop, where γ-rays produced by photopion processes are being quenched whenever their compactness increases above a critical level. This causes a spontaneous creation of soft photons in the system that result in further proton cooling and more production of γ-rays, thus making the loop operate. We perform an analytical study of a simplified set of equations describing the system, in order to investigate the connection of its temporal behaviour with key physical parameters. We also perform numerical integration of the full set of kinetic equations verifying not only our analytical results but also those of previous numerical studies. We find that once the system becomes `supercritical', it can exhibit either a periodic behaviour or a damped oscillatory one leading to a steady state. We briefly point out possible implications of such a supercriticality on the parameter values used in Active Galactic Nuclei spectral modelling, through an indicative fitting of the VHE emission of blazar 3C 279.
19 pages, 20 figures, accepted for publication in MNRAS
References in corpus (5)
- Very-High-Energy Gamma Rays from a Distant Quasar: How Transparent Is the Universe?
- Modeling the Emission Processes in Blazars
- Prompt GeV-TeV Emission of Gamma-Ray Bursts Due to High-Energy Protons, Muons and Electron-Positron Pairs
- Implications of automatic photon quenching on compact gamma-ray sources
- The Supercritical Pile GRB Model: The Prompt to Afterglow Evolution
Cited by in corpus (23)
- Photohadronic origin of -ray BL Lac emission: implications for IceCube neutrinos
- The time-dependent one-zone hadronic model - First principles
- Bethe-Heitler emission in BL Lacs: filling the gap between X-rays and -rays
- Mrk 421 as a case study for TeV and X-ray variability in leptohadronic models
- Leptonic and Hadronic Radiative Processes in Supermassive-Black-Hole Jets
- Implications of a PeV neutrino spectral cutoff in GRB models
- A self-consistent and time-dependent hybrid blazar emission model - Properties and application
- Self-consistent neutrino and UHE cosmic ray spectra from Mrk 421
- Particle transport in magnetized media around black holes and associated radiation
- A study of natural frequencies in a dynamic corona-disk system
- A hadronic minute-scale GeV flare from quasar 3C 279?
- On proton synchrotron blazar models: the case of quasar 3C 279
- The role of hadronic cascades in GRB models of efficient neutrino production
- LeHaMoC: a versatile time-dependent lepto-hadronic modeling code for high-energy astrophysical sources
- Time-dependent modelling of PKS 2155-304 in a low state
- A marginally fast-cooling proton-synchrotron model for prompt GRBs
- Hadronic supercriticality as a trigger for GRB emission
- A self-consistent leptonic-hadronic interpretation of the electromagnetic and neutrino emissions from blazar TXS 0506+056
- A roadmap to hadronic supercriticalities: a comprehensive study of the parameter space for high-energy astrophysical sources
- Patterns of variability in supercritical hadronic systems
- Spontaneously quenched gamma-ray spectra from compact sources
- Hadronic supercriticality in spherically expanding sources: application to GRB prompt emission
- Progress in Multiwavelength and Multi-Messenger Observations of Blazars and Theoretical Challenges