Two-injection scenario for the hard X-ray excess observed in Mrk 421
arXiv:2304.08726 · doi:10.3847/1538-4357/accc2e
Abstract
An interesting result recently reported for Mrk 421 is the detection of a significant excess at hard X-ray energies, which could provide useful information for investigating particle acceleration and emission mechanisms in the relativistic jet. Considering a two-injection scenario, we develop a self-consistent one-zone leptonic model to understand the origin of the hard X-ray excess in Mrk 421 during the period of extremely low X-ray and very high energy (VHE) flux in 2013 January. In the model, two populations of mono-energetic ultrarelativistic electrons are injected into the emission region that is a magnetized plasmoid propagating along the blazar jet. We numerically calculate the emitting electron energy distribution by solving a kinetic equation that incorporates both shock acceleration and stochastic acceleration processes. Moreover, we infer analytic expressions relating electrons acceleration, cooling, escape and injection to the observed spectra and variability. For the injection luminosity in particular, we derive a new approximate analytical expression for the case of continual injection with a mono-energetic distribution. Based on a comparison between the theoretical predictions and the observed SED, we conclude that the hard X-ray excess observed in Mrk 421 may be due to the synchrotron radiation emitted by an additional electrons population, which is co-spatial with an electron population producing simultaneous Optical/UV, soft X-ray, and -ray emissions. The stochastic acceleration may play a major role in producing the observed X-ray spectrum.
12 pages, 4 figures, 2 tables, Accepted for publication in ApJ
References in corpus (15)
- Relativistic Jets Shine through Shocks or Magnetic Reconnection?
- Synchrotron Self-Compton Analysis of TeV X-ray Selected BL Lacertae Objects
- Multiwavelength Observations of Markarian 421 in March 2001: an Unprecedented View on the X-ray/TeV Correlated Variability
- On the Momentum Diffusion of Radiating Ultrarelativistic Electrons in a Turbulent Magnetic Field
- Unprecedented study of the broadband emission of Mrk 421 during flaring activity in March 2010
- Time-Dependent Stochastic Particle Acceleration in Astrophysical Plasmas: Exact Solutions Including Momentum-Dependent Escape
- Unveiling the X-ray/TeV engine in Mkn 421
- First NuSTAR observations of the BL Lac - type blazar PKS~2155-304: constraints on the jet content and distribution of radiating particles
- On the origin of the hard X-Ray excess of high-synchrotron-peaked BL Lac object Mrk 421
- Connecting steady emission and Very High Energy flaring states in blazars: the case of Mrk 421
- A Steady-State Spectral Model For Electron Acceleration And Cooling In Blazar Jets: Application To 3C 279
- Probing an X-ray flare pattern in Mrk 421 induced by multiple stationary shocks: a solution to the bulk Lorentz factor crisis
- A time-dependent particle acceleration and emission model: Understanding the particle spectral evolution and blazar flares
- On the narrow spectral feature at 3 TeV in the MAGIC spectrum of Mrk 501
- On the Injection of Relativistic Electrons in the Jet of 3C 279