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Optical Spectropolarimetric Variability Properties in Blazars PKS 0637–75 and PKS 1510–089

dc.contributor.authorPodjeD, Stephanie Aen.ZA
dc.contributor.authorHickox, Ryan Cen.ZA
dc.contributor.authorIsler, Jedidah Cen.ZA
dc.contributor.authorBöttcher, Markusen.ZA
dc.contributor.authorSchutte, Hester Men.ZA
dc.date.accessioned2025-10-24T07:50:57Zen.ZA
dc.date.issued2024en.ZA
dc.descriptionJournal Article, Faculty of Natural and Agricultural Sciences, Centre for Space Research (CSR)-- Potchefstroom Campusen.ZA
dc.description.abstractSpectropolarimetry is a powerful tool to investigate the central regions of active galactic nuclei (AGNs) as polarization signatures are key to probing magnetic field structure, evolution, and the physics of particle acceleration in jets. Optical linear polarization of blazars is typically greater than a few percent, indicating the emission is dominated by nonthermal synchrotron radiation, while polarization less than a few percent is common for other type 1 AGNs. We present a spectropolarimetric study of PKS 0637-75 and PKS 1510-089 to determine how the head-on orientation of a jet and dominant emission processes influence polarimetric variations in the broad lines and continuum. Observations were obtained biweekly from the Robert Stobie Spectrograph on the Southern African Large Telescope. Variability in the continuum polarization is detected for both PKS 0637-75 and PKS 1510-089, with a total average level of 2.5% ± 0.1% and 7.5% ± 0.1%, respectively. There is no clear polarization in the broad Balmer emission lines and weak polarization in Mg II as the average level across all observations is 0.2% ± 0.1% for Hβ, 0.2% ± 0.3% for Hγ, and 0.6% ± 0.2% for Mg II. We find that polarization measurements confirm the conclusions drawn from spectral energy distribution modeling of the disk-jet contributions to the emission as optical polarization and time variability for PKS 0637-75 are shown to be dominated by accretion disk emission while those of PKS 1510-089 are due to both disk and jet emission, with greater jet contribution during flaring states.en.ZA
dc.description.sponsorshipAcknowledgments We thank the anonymous reviewer for comments that improved this work. S.A.P. acknowledges support from the Dartmouth Fellowship and Sigma Xi grant G201903158443203 and would like to thank Keighley E. Rockcliffe, Aylin García Soto, John R. Thorstensen, Elisabeth R. Newton, Rujuta A. Purohit, and Emily M. Boudreaux for various mentoring, advice, and conversations that improved the manuscript. R.C.H. acknowledges support from NASA through Astrophysics Data Analysis grant No. 80NSSC23K0485. All of the spectropolarimetric observations reported in this paper were obtained with the Southern African Large Telescope (SALT), under proposals 2018-2-SCI-039 (PI: J. Isler), 2019-2-SCI-040 (PI: J. Isler), 2020-2-SCI-017 (PI: S. Podjed), and 2021-1-SCI-027 (PI: S. Podjed) with SALT astronomers Danièl Groenewald and Lee Townsend—special thanks to the SALT observation team for their diligent communications, data collection, and initial reduction of data for our program study. This research has made use of the NASA/IPAC Extragalactic Database (NED) which is operated by the Jet Propulsion Laboratory, California Institute of Technology, under contract with the National Aeronautics and Space Administration. This work includes data collected by the ASAS-SN mission and Fermi-LAT mission. Facility: SALT (RSS). Software: polsalt (Crawford et al. 2016), lmfit (Newville et al. 2020), Astropy (Astropy Collaboration et al. 2013, 2018, 2022), IRAF (Tody 1986), PHEW (Núñez et al. 2022)en.ZA
dc.identifier.citationBöttcher, Markus. et al. 2024. Optical Spectropolarimetric Variability Properties in Blazars PKS 0637–75 and PKS 1510–089. Astrophysical Journal, (2024), 968:130 (12pp), [https://iopscience.iop.org/article/10.3847/1538-4357/ad4111/pdf]en.ZA
dc.identifier.urihttps://iopscience.iop.org/article/10.3847/1538-4357/ad4111/pdfen.ZA
dc.identifier.urihttp://hdl.handle.net/10394/43742en.ZA
dc.language.isoenen.ZA
dc.publisherAstrophysical Journalen.ZA
dc.subjectBlazars (164)en.ZA
dc.subjectFlat-Spectrum Radio Quasars (2163)en.ZA
dc.subjectSpectropolarimetry (1973)en.ZA
dc.subjectActive Galactic Nuclei (16)en.ZA
dc.subjectRelativistic Jets (1390)en.ZA
dc.titleOptical Spectropolarimetric Variability Properties in Blazars PKS 0637–75 and PKS 1510–089en.ZA
dc.typeArticleen.ZA

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