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The first Fermi multifrequency campaign on BL Lacertae: Characterizing the low-activity state of the eponymous blazar

Journal Article · · The Astrophysical Journal
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Here, we report on observations of BL Lacertae during the first 18 months of Fermi LAT science operations and present results from a 48 day multifrequency coordinated campaign from 2008 August 19 to 2008 October 7. The radio to gamma-ray behavior of BL Lac is unveiled during a low-activity state thanks to the coordinated observations of radio-band (Metsähovi and VLBA), near-IR/optical (Tuorla, Steward, OAGH, and MDM), and X-ray (RXTE and Swift) observatories. No variability was resolved in gamma rays during the campaign, and the brightness level was 15 times lower than the level of the 1997 EGRET outburst. Moderate and uncorrelated variability has been detected in UV and X-rays. The X-ray spectrum is found to be concave, indicating the transition region between the low- and high-energy components of the spectral energy distribution (SED). VLBA observation detected a synchrotron spectrum self-absorption turnover in the innermost part of the radio jet appearing to be elongated and inhomogeneous, and constrained the average magnetic field there to be less than 3 G. Over the following months, BL Lac appeared variable in gamma rays, showing flares (in 2009 April and 2010 January). There is no evidence for the correlation of gamma rays with the optical flux monitored from the ground in 18 months. The SED may be described by a single-zone or a two-zone synchrotron self-Compton (SSC) model, but a hybrid SSC plus external radiation Compton model seems to be preferred based on the observed variability and the fact that it provides a fit closest to equipartition.
Research Organization:
SLAC National Accelerator Laboratory (SLAC), Menlo Park, CA (United States)
Sponsoring Organization:
USDOE
Grant/Contract Number:
AC02-76SF00515
OSTI ID:
1357260
Alternate ID(s):
OSTI ID: 21574831
Journal Information:
The Astrophysical Journal, Journal Name: The Astrophysical Journal Journal Issue: 2 Vol. 730; ISSN 0004-637X
Publisher:
Institute of Physics (IOP)Copyright Statement
Country of Publication:
United States
Language:
English

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Cited By (20)

Radio core dominance of Fermi blazars journal June 2016
The TANAMI Multiwavelength Program: Dynamic spectral energy distributions of southern blazars journal June 2016
A fast, very-high-energy γ -ray flare from BL Lacertae during a period of multi-wavelength activity in June 2015 journal March 2019
Catalog and Statistical Study of X-Ray Selected bl Lacertae Objects journal January 2013
THE SECOND CATALOG OF ACTIVE GALACTIC NUCLEI DETECTED BY THE FERMI LARGE AREA TELESCOPE journal December 2011
CONTEMPORANEOUS VLBA 5 GHz OBSERVATIONS OF LARGE AREA TELESCOPE DETECTED BLAZARS journal December 2011
BLAZARS AS ULTRA-HIGH-ENERGY COSMIC-RAY SOURCES: IMPLICATIONS FOR TeV GAMMA-RAY OBSERVATIONS journal March 2012
MULTIWAVELENGTH VARIABILITY PROPERTIES OF FERMI BLAZAR S5 0716+714 journal February 2014
The awakening of BL Lacertae: observations by Fermi, Swift and the GASP-WEBT★ journal October 2013
Bethe–Heitler emission in BL Lacs: filling the gap between X-rays and γ-rays journal December 2014
Multifrequency study of the gamma-ray flaring BL Lacertae object PKS 2233–148 in 2009–2012 journal November 2018
High-energy neutrino flux from individual blazar flares journal September 2019
The feasibility of magnetic reconnection powered blazar flares from synchrotron self-Compton emission journal March 2019
Microvariability in BL Lacertae: “Zooming” into the Innermost Blazar Regions journal January 2018
Erratic Flaring of bl lac in 2012–2013: Multiwavelength Observations journal January 2016
A Method for Locating a High-energy Dissipation Region in a Blazar journal June 2018
On the Jet Properties of γ -Ray-loud Active Galactic Nuclei journal April 2018
Multi-frequency study of the gamma-ray flaring BL Lac object PKS 2233-148 in 2009-2012 text January 2018
The Feasibility of Magnetic Reconnection Powered Blazar Flares from Synchrotron Self-Compton Emission text January 2018
High energy neutrino flux from individual blazar flares text January 2019

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