Constraining the parameter space of the one-zone synchrotron-self-Compton model for GeV-TeV detected BL Lac objects
arXiv:1305.4597 · doi:10.1051/0004-6361/201220963
Abstract
The one-zone synchrotron-self-Compton (SSC) model aims to describe the spectral energy distribution (SED) of BL Lac objects via synchrotron emission by a non-thermal population of electrons and positrons in a single homogeneous emission region, partially upscattered to gamma-rays by the particles themselves. The model is usually considered as degenerate, given that the number of free parameters is higher than the number of observables. It is thus common to model the SED by choosing a single set of values for the SSC-model parameters that provide a good description of the data, without studying the entire parameter space. We present here a new numerical algorithm which permits us to find the complete set of solutions, using the information coming from the detection in the GeV and TeV energy bands. The algorithm is composed of three separate steps: we first prepare a grid of simulated SEDs and extract from each SED the values of the observables; we then parametrize each observable as a function of the SSC parameters; we finally solve the system for a given set of observables. We iteratively solve the system to take into account uncertainties in the values of the observables, producing a family of solutions. We present a first application of our algorithm to the typical high-frequency-peaked BL Lac object 1RXS J101015.9-311909, provide constraints on the SSC parameters, and discuss the result in terms of our understanding of the blazar emitting region.
12 pages, 5 figures; Accepted for publication in A&A
References in corpus (5)
- Synchrotron Self-Compton Analysis of TeV X-ray Selected BL Lacertae Objects
- Formation of hard VHE gamma-ray spectra of blazars due to internal photon-photon absorption
- Hard TeV spectra of blazars and the constraints to the IR intergalactic background
- Blazar sequence - an artefact of Doppler boosting
- The Sedentary Survey of Extreme High Energy Peaked BL Lacs III. Results from Optical Spectroscopy
Cited by in corpus (17)
- A hadronic origin for ultra-high-frequency-peaked BL Lac objects
- Relativistic Magnetic Reconnection in Electron-Positron-Proton Plasmas: Implications for Jets of Active Galactic Nuclei
- A Three-Year Multi-Wavelength Study of the Very High Energy Gamma-ray Blazar 1ES 0229+200
- Leptonic and Hadronic Radiative Processes in Supermassive-Black-Hole Jets
- Multiband variability studies and novel broadband SED modeling of Mrk 501 in 2009
- Electron-proton co-acceleration on relativistic shocks in extreme-TeV blazars
- Expected signatures from hadronic emission processes in the TeV spectra of BL Lac objects
- VERITAS detection of -ray flaring activity from the BL Lac object 1ES 1727+502 during bright moonlight observations
- Blazars at Very High Energies: Emission Modelling
- Luminous and high-frequency peaked blazars: the origin of the -ray emission from PKS 1424+240
- Very-High-Energy -Ray Observations of the Blazar 1ES 2344+514 with VERITAS
- VERITAS and Multiwavelength Observations of the BL Lacertae Object 1ES 1741+196
- TANAMI: Tracking Active Galactic Nuclei with Austral Milliarcsecond Interferometry - II. Additional Sources
- Observing the Energetic Universe at Very High Energies with the VERITAS Gamma Ray Observatory
- VERITAS results from a three-year observing campaign on the BL Lac object 1ES 0229+200
- Discovery of very-high-energy emission from RGB J2243+203 and derivation of its redshift upper limit
- Relativistic Jet Properties of GeV-TeV Blazars and Possible Implications for the Jet Formation, Composition, and Cavity Kinematics