Spectral variability of quasars from multi-epoch photometric data in the Sloan Digital Sky Survey Stripe 82
H. Meusinger (1), A. Hinze (2), A. de Hoon (3) ((1) TLS Tautenburg,, Germany, (2) University Bern, Switzerland, (3) Astrophysikalisches Institut, Potsdam, Germany)

TL;DR
This study analyzes quasar variability across multiple wavelengths using SDSS Stripe 82 data, revealing wavelength-dependent variability patterns and differences in quasars with unusual spectra, supported by Monte Carlo simulations.
Contribution
It introduces a new method to analyze quasar variability dependence on wavelength using a large SDSS sample and confirms previous findings with enhanced data.
Findings
Variability is stronger in bluer bands and depends on emission line contributions.
The continuum fluctuation follows a power law with wavelength, exponent -2.
Unusual quasars with weak emission lines show less variability, possibly indicating high Eddington ratios.
Abstract
We present a new approach to analysing the dependence of quasar variability on rest-frame wavelengths. We exploited the spectral archive of the Sloan Digital Sky Survey (SDSS) to create a sample of more than 9000 quasars in the Stripe 82. The quasar catalogue was matched with the Light Motion Curve Catalogue for SDSS Stripe 82 and individual first-order structure functions were computed. The structure functions are used to create a variability indicator that is related to the same intrinsic timescales for all quasars (1 to 2 yr in the rest frame). We study the variability ratios for adjacent SDSS filter bands as a function of redshift. While variability is almost always stronger in the bluer passband compared to the redder, the variability ratio depends on whether strong emission lines contribute to either one band or the other. The variability ratio-redshift relations resemble the…
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