2010AIP conference proceedingsOpen access

The Fermi blazars’ divide based on the diagnostic of the SEDs peak frequencies

A. Tramacere, E. Cavazzuti, P. Giommi, Nicola Mazziotta, C. Monte, C. Cecchi, Stefano Ciprini, P. Lubrano, G. Tosti

Open full text 10 citations

Abstract

We have studied the quasi‐simultaneous Spectral Energy Distributions (SED) of 48 LBAS blazars, detected within the three months of the LAT Bright AGN Sample (LBAS) data taking period, combining Fermi and Swift data with radio NIR‐Optical and hard‐ X/gamma‐ray data.Using these quasi‐simultaneous SEDs, sampling both the low and the high energy peak of the blazars broad band emission, we were able to apply a diagnostic tool based on the estimate of the peak frequencies of the synchrotron (S) and Inverse Compton (IC) components.Our analysis shows a Fermi blazar’s divide based on the peak frequencies of the SED. The robust result is that the Synchrotron Self Compton (SSC) region divides in two the νpS−γpSSC plane. Objects within or below this region, radiating likely via the SSC process, are high‐frequency‐peaked BL Lac object (HBL), or low/intermediate‐frequency‐peaked BL Lac object (LBL/IBL). All of the IBLs/LBLs within or below the SSC region are not Compton dominated. The objects lying above the SSC region, radiating likely via the External radiation Compton (ERC) process, are Flat Spectrum Radio Quasars and IBLs/LBLs. All of the IBLs/LBLs in the ERC region show a significant Compton dominance.

Open-access reader

About this research paper

What this paper is about

We have studied the quasi‐simultaneous Spectral Energy Distributions (SED) of 48 LBAS blazars, detected within the three months of the LAT Bright AGN Sample (LBAS) data taking period, combining Fermi and Swift data with radio NIR‐Optical and hard‐ X/gamma‐ray data.Using these quasi‐simultaneous SEDs, sampling both the low and the high energy peak of the blazars broad band emission, we were able to apply a diagnostic tool based on the estimate of the peak frequencies of the synchrotron (S) and Inverse Compton (IC) components.Our analysis shows a Fermi blazar’s divide based on the peak frequencies of the SED. The robust result is that the Synchrotron Self Compton (SSC) region divides in two the νpS−γpSSC plane. Objects within or below this region, radiating likely via the SSC process, are high‐frequency‐peaked BL Lac object (HBL), or low/intermediate‐frequency‐peaked BL Lac object (LBL/IBL). All of the IBLs/LBLs within or below the SSC region are not Compton dominated. The objects lying above the SSC region, radiating likely via the External radiation Compton (ERC) process, are Flat Spectrum Radio Quasars and IBLs/LBLs. All of the IBLs/LBLs in the ERC region show a significant Compton dominance.

Why it matters

OpenAlex reports 10 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

We have studied the quasi‐simultaneous Spectral Energy Distributions (SED) of 48 LBAS blazars, detected within the three months of the LAT Bright AGN Sample (LBAS) data taking period, combining Fermi and Swift data with radio NIR‐Optical and hard‐ X/gamma‐ray data.Using these quasi‐simultaneous SEDs, sampling both the low and the high energy peak of the blazars broad band emission, we were able to apply a diagnostic tool based on the estimate of the peak frequencies of the synchrotron (S) and Inverse Compton (IC) components.Our analysis shows a Fermi blazar’s divide based on the peak frequencies of the SED. The robust result is that the Synchrotron Self Compton (SSC) region divides in two the νpS−γpSSC plane. Objects within or below this region, radiating likely via the SSC process, are high‐frequency‐peaked BL Lac object (HBL), or low/intermediate‐frequency‐peaked BL Lac object (LBL/IBL). All of the IBLs/LBLs within or below the SSC region are not Compton dominated. The objects lying above the SSC region, radiating likely via the External radiation Compton (ERC) process, are Flat Spectrum Radio Quasars and IBLs/LBLs. All of the IBLs/LBLs in the ERC region show a significant Compton dominance.

Key concepts: Blazar, Fermi Gamma-ray Space Telescope, Physics, Astrophysics, Computer science, Gamma ray

Related papers

Back to paper searchBrowse research topicsOriginal source
The Fermi blazars’ divide based on the diagnostic of the SEDs peak frequencies — Research Paper | ScholarLens