Blazar jets launched with similar energy per baryon, independently of their power
arXiv:2009.02273 · doi:10.1093/mnras/staa3925
Abstract
The most extreme active galactic nuclei (AGN) are the radio active ones whose relativistic jet propagates close to our line of sight. These objects were first classified according to their emission line features into flat-spectrum radio quasars (FSRQs) and BL Lacertae objects (BL Lacs). More recently, observations revealed a trend between these objects known as the \emph{blazar sequence}, along with an anti-correlation between the observed power and the frequency of the synchrotron peak. In the present work, we propose a fairly simple idea that could account for the whole blazar population: all jets are launched with similar energy per baryon, independently of their power. In the case of FSRQs, the most powerful jets, manage to accelerate to high bulk Lorentz factors, as observed in the radio. As a result, they have a rather modest magnetization in the emission region, resulting in magnetic reconnection injecting a steep particle energy distribution and, consequently, steep emission spectra in the -rays. For the weaker jets, namely BL Lacs, the opposite holds true; i.e., the jet does not achieve a very high bulk Lorentz factor, leading to more magnetic energy available for non-thermal particle acceleration, and harder emission spectra at frequencies GeV. In this scenario, we recover all observable properties of blazars with our simulations, including the \emph{blazar sequence} for models with mild baryon loading (). This interpretation of the blazar population, therefore, tightly constrains the energy per baryon of blazar jets regardless of their accretion rate.
11 pages, 5 figures, accepted in MNRAS
References in corpus (22)
- Astrophysics Source Code Library
- Fast TeV variability in blazars: jets in a jet
- The power of blazar jets
- Magnetic acceleration of ultra-relativistic jets in gamma-ray burst sources
- Magnetic acceleration of relativistic AGN jets
- Relativistic Jets Shine through Shocks or Magnetic Reconnection?
- The blazar sequence: a new perspective
- MOJAVE. XVII. Jet Kinematics and Parent Population Properties of Relativistically Beamed Radio-Loud Blazars
- The role of kink instability in Poynting-flux dominated jets
- On the relation between AGN gamma-ray emission and parsec-scale radio jets
- TXS 0506+056, the first cosmic neutrino source, is not a BL Lac
- Blazar flares powered by plasmoids in relativistic reconnection
- Relativistic magnetic reconnection in pair plasmas and its astrophysical applications
- The spectrum of the Broad Line Region and the high-energy emission of powerful blazars
- The Blazar Sequence: Validity and Predictions
- The jet-disc connection in AGN
- The role of Kelvin-Helmholtz instability in the internal structure of relativistic outflows. The case of the jet in 3C 273
- The Relativistic Jet Dichotomy and the End of the Blazar Sequence
- X-ray flux variability of active galactic nuclei observed using NuSTAR
- Jet Properties of Compact Steep-Spectrum Sources and an Eddington-Ratio-Driven Unification Scheme of Jet Radiation in Active Galactic Nuclei
- Magnetization of jets in luminous blazars
- Resolving the radio loud/radio quiet dichotomy without thick disks
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- Balancing Turbulent Heating with Radiative Cooling in Blazars
- XMM-NuSTAR Observation and Multiwavelength SED Modeling of Blazar 4FGL J1520.8-0348
- The blazar sequence revised