On the Cosmological Evolution of the Luminosity Function and the Accretion Rate of Quasars

نویسنده

  • Zoltan Haiman
چکیده

We consider a class of models for the redshift evolution (between 0 ∼< z ∼< 4) of the observed optical and X–ray quasar luminosity functions (LFs), with the following assumptions: (i) the mass–function of dark matter halos follows the Press–Schechter theory, (ii) the black hole (BH) mass scales linearly with the halo mass, (iii) quasars have a constant universal lifetime, and (iv) a thin accretion disk provides the optical luminosity of quasars, while the X–ray/optical flux ratio is calibrated from a sample of observed quasars. The mass accretion rate Ṁ onto quasar BHs is a free parameter of the models, that we constrain using the observed LFs. The accretion rate Ṁ inferred from either the optical or X–ray data under these assumptions generally decreases as a function of cosmic time from z ≃ 4 to z ≃ 0. We find that a comparable accretion rate is inferred from the X–ray and optical LF only if the X–ray/optical flux ratio decreases with BH mass. Near z ≃ 0, Ṁ drops to substantially sub-Eddington values at which advection–dominated accretion flows (ADAFs) exist. Such a decline of Ṁ , possibly followed by a transition to radiatively inefficient ADAFs, could explain both the absence of bright quasars in the local universe and the faintness of accreting BHs at the centers of nearby galaxies. We argue that a decline of the accretion rate of the quasar population is indeed expected in cosmological structure formation models. Subject headings: cosmology: theory – quasars: general – black hole physics – accretion, accretion disks

برای دانلود رایگان متن کامل این مقاله و بیش از 32 میلیون مقاله دیگر ابتدا ثبت نام کنید

ثبت نام

اگر عضو سایت هستید لطفا وارد حساب کاربری خود شوید

منابع مشابه

Cosmological Evolution of the Accretion Rate in Quasars

We derive the mass accretion rate Ṁ onto quasar black holes (BHs), and its redshift evolution between 0 ∼< z ∼< 4, using the observed optical and X–ray quasar luminosity functions (LFs). We make the following assumptions: (i) the mass–function of dark matter halos follows the Press–Schechter theory, (ii) the BH mass scales linearly with the halo mass, (iii) quasars have a constant universal lif...

متن کامل

Cosmological Evolution of Quasars

We present a model for the cosmological evolution of quasars (QSOs) under the assumption that they are powered by massive accreting black holes. Accretion flows around massive black holes make a transition from high radiative efficiency (∼ 10%) to low efficiency, advection-dominated flows when Ṁ/ṀEdd falls below the critical rate ∼ 0.3α2 ∼ 10−2 where Ṁ is the mass accretion rate, ṀEdd ∝ M is th...

متن کامل

Fueling Low-level Agn Activity through the Stochastic Accretion of Cold Gas1

Using a simple description of feedback from black hole growth, we develop an analytic model for the fueling of Seyferts (low-luminosity AGN) and their relation to their host galaxies, Eddington ratio distributions, and cosmological evolution. We derive a solution for the time evolution of accretion rates in a feedback-driven blast wave, applicable to large-scale outflows from bright quasars in ...

متن کامل

On the Cosmological Evolution of Quasar Black-hole Masses

Virial black-hole mass estimates are presented for 12698 quasars in the redshift interval 0.1 ≤ z ≤ 2.1, based on modelling of spectra from the Sloan Digital Sky Survey (SDSS) first data release . The black-hole masses of the SDSS quasars are found to lie between ≃ 10 M⊙ and an upper limit of ≃ 3 × 10 M⊙, entirely consistent with the largest black-hole masses found to date in the local Universe...

متن کامل

The Evolution and Luminosity Function of Quasars from Complete Optical Surveys

We use several quasar samples (LBQS, HBQS, Durham/AAT and EQS) to determine the density and luminosity evolution of quasars. Combining these different samples and accounting for varying selection criteria require tests of correlation and the determination of density functions for multiply truncated data. We describe new non-parametric techniques for accomplishing these tasks, which have been de...

متن کامل

ذخیره در منابع من


  با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید

عنوان ژورنال:

دوره   شماره 

صفحات  -

تاریخ انتشار 1999