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A Decade of Multiwavelength Observations of the TeV Blazar 1ES 1215+303: Extreme Shift of the Synchrotron Peak Frequency and Long-term Optical–Gamma-Ray Flux Increase

Authors :
Tuomas Savolainen
S. S. Scott
K. Nilsson
A. Wilhelm
Walter Max-Moerbeck
S. O'Brien
Alasdair E. Gent
Nahee Park
A. N. Otte
K. Ragan
R. A. Ong
G. H. Sembroski
K. Pfrang
Merja Tornikoski
T. J. Williamson
Wei Cui
Sebastian Kiehlmann
R. Shang
Marita Krause
Anushka Udara Abeysekara
Philip G. Edwards
Amy Furniss
P. Kaaret
A. Pichel
Gernot Maier
Alexander B. Pushkarev
D. Horan
Anne Lähteenmäki
Jamie Holder
V. V. Vassiliev
B. G. Piner
Lucy Fortson
A. Brill
P. Moriarty
Karlen Shahinyan
Tarek M. Hassan
Denis Bernard
J. H. Buckley
G. Hughes
M. Pohl
I. Sushch
M. Kertzman
A. C. S. Readhead
J. Valverde
Robert Brose
Wystan Benbow
Q. Feng
John L. Quinn
Daniel Nieto
Stephen Fegan
M. Nievas-Rosillo
D. Ribeiro
M. Buchovecky
Giuliana Noto
T. B. Humensky
Jenni Jormanainen
F. Krennrich
Talvikki Hovatta
M. J. Lang
A. Petrashyk
R. R. Prado
V. Fallah Ramazani
J. P. Finley
Jodi Christiansen
P. Wilcox
Olivier Hervet
A. J.R. Weinstein
A. D. Falcone
Matthew L. Lister
D. S. Hanna
N. Kelley-Hoskins
Ralph Bird
I. Sadeh
David A. Williams
Gordon T. Richards
A. Archer
E. Roache
D. B. Kieda
Orel Gueta
L. O. Takalo
G. H. Gillanders
Yuri Y. Kovalev
P. T. Reynolds
E. Lindfors
Marcos Santander
Reshmi Mukherjee
C. Giuri
R. M. Wells
E. Pueschel
Laboratoire Leprince-Ringuet (LLR)
Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-École polytechnique (X)-Centre National de la Recherche Scientifique (CNRS)
Fermi-LAT
VERITAS
Centre National de la Recherche Scientifique (CNRS)-École polytechnique (X)-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)
University of Turku
Metsähovi Radio Observatory
Anne Lähteenmäki Group
Department of Electronics and Nanoengineering
Aalto-yliopisto
Aalto University
Source :
The astrophysical journal / 1 Part 1 891(2), 170-(2020). doi:10.3847/1538-4357/ab765d, The Astrophysical Journal, Astrophys.J., Astrophys.J., 2020, 891, pp.170. ⟨10.3847/1538-4357/ab765d⟩
Publication Year :
2020
Publisher :
American Astronomical Society, 2020.

Abstract

Blazars are known for their variability on a wide range of timescales at all wavelengths. Most studies of TeV gamma-ray blazars focus on short timescales, especially during flares. With a decade of observations from the Fermi-LAT and VERITAS, we present an extensive study of the long-term multi-wavelength radio-to-gamma-ray flux-density variability, with the addition of a couple of short-time radio-structure and optical polarization observations of the blazar 1ES 1215+303 (z=0.130), with a focus on its gamma-ray emission from 100 MeV to 30 TeV. Multiple strong GeV gamma-ray flares, a long-term increase in the gamma-ray and optical flux baseline and a linear correlation between these two bands are observed over the ten-year period. Typical HBL behaviors are identified in the radio morphology and broadband spectrum of the source. Three stationary features in the innermost jet are resolved by VLBA at 43.1, 22.2, and 15.3 GHz. We employ a two-component synchrotron self-Compton model to describe different flux states of the source, including the epoch during which an extreme shift in energy of the synchrotron peak frequency from infrared to soft X-rays is observed.<br />Comment: Accepted for publication in the Astrophysical Journal

Details

ISSN :
15384357
Volume :
891
Database :
OpenAIRE
Journal :
The Astrophysical Journal
Accession number :
edsair.doi.dedup.....49d5210af8a67ae21e1e77fd38c0bf33
Full Text :
https://doi.org/10.3847/1538-4357/ab765d