The optical spectropolarimetric behaviour of a selection of high-energy blazars

Author:

Barnard Joleen1ORCID,van Soelen B1ORCID,Acharya S2,Böttcher M3,Britto R J1,Cooper J1,Buckley D A H14ORCID,Martin-Carrillo A5,Vaidya B6ORCID,van der Westhuizen I P1ORCID,Zacharias M73

Affiliation:

1. Department of Physics, University of the Free State , Bloemfontein 9301 , South Africa

2. Hamburger Sternwarte, Universität Hamburg , Gojenbergsweg 112, D-21029 Hamburg , Germany

3. Centre for Space Research, North West University , Potchefstroom 2520 , South Africa

4. South African Astronomical Observatory, Observatory , Cape Town 7925 , South Africa

5. Space Science Group, School of Physics, University College Dublin , Dublin 4 , Ireland

6. Discipline of Astronomy Astrophysics and Space Engineering, Indian Institute of Technology Indore , Indore 453552 , India

7. Landessternwarte, Universität Heidelberg , Königstuhl 12, D-69117 Heidelberg , Germany

Abstract

ABSTRACT At optical/ultraviolet energies, blazars display an underlying thermal (unpolarized) contribution from the accretion disc, torus, and line-emitting regions, diluting the polarized emission from the jet-component. Optical polarimetry can be used to disentangle the thermal and non-thermal components, and place constraints on the particle populations and acceleration mechanisms responsible for the non-thermal emission. We present the results of a linear optical spectropolarimetric observing campaign of 18 blazars (six BL Lac-type objects and 12 flat-spectrum radio quasars) undertaken with the Southern African Large Telescope between 2016 and 2022. This was done to observe these systems during flaring states, as well as long-term monitoring of PKS1510-089, AP Lib, and PKS 1034-293. The observations traced the frequency dependence of the degree and angle of polarization, as well as changes in the spectral line strengths. We investigated possible correlations between the polarization and other observed characteristics for the sources. While an indication of correlation was found between the frequency dependence and the average level of polarization for some sources, a correlation was not found for the population as a whole. These results highlight that continuous observations and in-depth modelling of polarization and its frequency dependence is required to obtain a more holistic view of TeV blazars.

Funder

National Research Foundation

Deutsche Forschungsgemeinschaft

Publisher

Oxford University Press (OUP)

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