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October 16, 20250 citationsOpen Access

Exploring Quasar Variability With ZTF at 0<z<3: A Universal Relation with Eddington Ratio

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HGHygor Benati GonçalvesSPSwayamtrupta PandaTSThaisa Storchi‐Bergmann

Key Points

  • A strong anti-correlation exists between variability amplitude and luminosity in quasars.
  • Photometric variability was analyzed for 915 quasars across redshifts 0 to 3, revealing notable trends.
  • SMBH masses and luminosities were obtained from the SDSS DR16 quasar catalog for comprehensive analysis.
  • The proposed equation for variability and Eddington ratio may assist further studies in active galactic nuclei.

Abstract

Quasars, powered by accretion onto supermassive black holes (SMBHs), exhibit significant variability, offering insights into the physics of accretion and the properties of the central engines. In this study, we analyze photometric variability and its correlation with key quasar properties, including black hole mass (M₁₇) and nuclear luminosities, using 915 quasars with 0 z<3. 0 from the AQMES sample monitored within SDSS-V. Variability metrics were derived from approximately 6-year light curves provided by the Zwicky Transient Facility -- ZTF, while SMBH masses and luminosities were obtained from the SDSS DR16 quasar catalog of wu2022catalog. We identify a strong anti-correlation between variability amplitude and luminosity, which strengthens with redshift, and a redshift-dependent trend for M₁₇: a positive correlation at low redshifts, no significant correlation at intermediate redshifts, and an anti-correlation the highest redshifts. Our main finding is a robust anti-correlation between photometric variability amplitude and Eddington ratio, consistent across redshift bins. We present a general equation encapsulating this relationship, that appears to be almost free of redshift dependence, enabling predictions of quasar variability based on accretion parameters or vice-versa. The derived relation with the Eddington ratio provides a unified framework for interpreting variability in active galactic nuclei (AGN) and facilitates future studies of quasar variability using high-cadence surveys, such as the Vera C. Rubin Observatory's Legacy Survey of Space and Time -- LSST.

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Cite This Study

Gonçalves et al. (2025) studied this question.

synapsesocial.com/papers/68f147cc724575985c3fd19bhttps://doi.org/10.48550/arxiv.2505.09779
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