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The optical spectral features of 27 Fermi blazars

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arxiv 2212.12331 v2 pith:IJQGA57R submitted 2022-12-23 astro-ph.HE astro-ph.GA

classification astro-ph.HEastro-ph.GA
keywords opticalspectralblazarsbswbfsrqslacsrswbbecomes
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A spectral variation accompanied with flux variability is a commonly-observed phenomenon for blazars. In order to further investigate the optical spectral feature of blazars, we have collected the long-term optical V and R band data of 27 blazars (14 BL Lacs and 13 FSRQs), and calculated their optical spectral indices. The results show that the spectral indices vary with respect to the brightness for all of these blazars. In general, the optical spectrum progressively becomes flatter (or steeper), when the brightness increases. However the spectrum changes more and more slowly, until it tends to be stable. In other words, the source becomes bluer (or redder) and then gradually stabilizes when it brightens, which are briefly named the bluer-stable-when-brighter (BSWB) and redder-stable-when-brighter (RSWB) behaviors, respectively. Thirteen of the 14 BL Lacs show the BSWB behavior, with an exception of AO 0235+164. On the contrary, most of FSRQs (10 out of 13) exhibit the RSWB trend. It is confirmed that blazars follow the two universal optical spectral behaviors, namely, BSWB and RSWB. The model of two constant-spectral-index components can well explain the optical spectral features qualitatively and quantitatively. The results illustrate that the optical emission are mainly composed of two stable-color components, i.e., less variable thermal emission and high variable synchrotron radiation. And in most cases, the thermal component of BL Lacs is redder than that of synchrotron radiation, whereas FSRQs are the opposite.

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  1. The long-term optical flux variations of Compact Symmetric Objects

    astro-ph.GA 2025-05 conditional novelty 6.0 of 10

    Compact symmetric objects show low-amplitude optical variability and a bluer-when-brighter trend, with weaker amplitude than blazars, consistent with a jet-origin interpretation.

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