English

EUCLIA - Exploring the UV/optical continuum lag in active galactic nuclei. I. a model without light echoing

High Energy Astrophysical Phenomena 2018-03-16 v3 Cosmology and Nongalactic Astrophysics Astrophysics of Galaxies

Abstract

The tight inter-band correlation and the lag-wavelength relation among UV/optical continua of active galactic nuclei have been firmly established. They are usually understood within the widespread reprocessing scenario, however, the implied inter-band lags are generally too small. Furthermore, it is challenged by new evidences, such as the X-ray reprocessing yields too much high frequency UV/optical variations as well as it fails to reproduce the observed timescale-dependent color variations among {\it Swift} lightcurves of NGC 5548. In a different manner, we demonstrate that an upgraded inhomogeneous accretion disk model, whose local {\it independent} temperature fluctuations are subject to a speculated {\it common} large-scale temperature fluctuation, can intrinsically generate the tight inter-band correlation and lag across UV/optical, and be in nice agreement with several observational properties of NGC 5548, including the timescale-dependent color variation. The emergent lag is a result of the {\it differential regression capability} of local temperature fluctuations when responding to the large-scale fluctuation. An average speed of propagations as large as 15%\gtrsim 15\% of the speed of light may be required by this common fluctuation. Several potential physical mechanisms for such propagations are discussed. Our interesting phenomenological scenario may shed new light on comprehending the UV/optical continuum variations of active galactic nuclei.

Keywords

Cite

@article{arxiv.1711.06266,
  title  = {EUCLIA - Exploring the UV/optical continuum lag in active galactic nuclei. I. a model without light echoing},
  author = {Zhen-Yi Cai and Jun-Xian Wang and Fei-Fan Zhu and Mou-Yuan Sun and Wei-Min Gu and Xin-Wu Cao and Feng Yuan},
  journal= {arXiv preprint arXiv:1711.06266},
  year   = {2018}
}

Comments

18 pages, 8 figures. ApJ accepted. Further comments are very welcome!

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