English

The luminosity dependence of quasar UV continuum slope: dust extinction scenario

Astrophysics of Galaxies 2016-06-15 v1 Cosmology and Nongalactic Astrophysics

Abstract

We investigate the UV continuum slope α\alpha of a large quasar sample from SDSS DR7. By using specific continuum windows, we build two samples at lower (0.71<z<1.190.71<z<1.19) and higher (1.90<z<3.151.90<z<3.15) redshifts, which correspond to the continuum slopes at longer (NUV) and shorter (FUV) rest wavelength ranges respectively. Overall, the average continuum slopes are 0.36-0.36 and 0.51-0.51 for αNUV\alpha_{\rm NUV} and αFUV\alpha_{\rm FUV} with similar dispersions σα0.5\sigma_{\alpha} \sim 0.5. For both samples, we confirm the luminosity dependence of the continuum slope, i.e., fainter quasars have redder spectra. We further find that both αNUV\alpha_{\rm NUV} and αFUV\alpha_{\rm FUV} have a common upper limit (1/3\sim 1/3) which is almost independent of the quasar luminosity LbolL_{\rm bol}. This finding implies that the intrinsic quasar continuum (or the bluest quasar), at any luminosity, obey the standard thin disk model. We propose that the other quasars with redder α\alpha are caused by the reddening from the dust {\it locally}. With this assumption, we employ the dust extinction scenario to model the observed LbolαL_{\rm bol}-\alpha relation. We find that, a typical value of E(BV)0.1E(B-V)\sim0.1 to 0.30.3 mag (depending on the types of extinction curve) of the quasar {\it local} dust is enough to explain the discrepancy of α\alpha between the observation (0.5\sim-0.5) and the standard accretion disk model prediction (1/3\sim 1/3).

Keywords

Cite

@article{arxiv.1604.05892,
  title  = {The luminosity dependence of quasar UV continuum slope: dust extinction scenario},
  author = {Xiaoyi Xie and Zhengyi Shao and Shiyin Shen and Hui Liu and Linlin Li},
  journal= {arXiv preprint arXiv:1604.05892},
  year   = {2016}
}

Comments

7pages, 3 figures, accepted in ApJ