SearcharxivSearch

arXiv · astro-ph/9710147

Hard X-rays from Emission Line Galaxies and the X-ray Background: A Test for Advection Dominated Accretion with Radio Sources

Abstract

Recent studies of the cosmic X-ray background (XRB) have suggested the possible existence of a population of relatively faint sources with hard X-ray spectra; however, the emission mechanism remains unclear. If the hard X-ray emission is from the radiatively inefficient, advection dominated accretion flows (ADAFs) around massive black holes in galactic nuclei, X-ray luminosity and radio luminosity satisfy the approximate relation $L_R\sim 7\times 10^{35}(ν/15GHz)^{7/5}(M/10^7M_{\odot}) (L_x/10^{40} erg s^{-1})^{1/10} erg s^{-1}$ where $L_R=νL_ν$ is the radio luminosity at frequency $ν$, $M$ is the mass of the accreting black hole, and $10^{40} \simle L_x\simle 10^{42} erg s^{-1}$ is the 2-10 keV X-ray luminosity. These sources are characterized by inverted radio spectra $I_ν\propto ν^{2/5}$. For example, an ADAF X-ray source with luminosity $L_x\sim 10^{41} erg s^{-1}$ has a nuclear radio luminosity of $\sim 4\times 10^{36}(M/3\times 10^7M_{\odot}) erg s^{-1}$ at $\sim 20$ GHz and if at a distance of $\sim 10 (M/3\times 10^7M_{\odot})^{1/2} Mpc$ would be detected as a $\sim 1mJy$ point radio source. High frequency ($\sim 20 GHz$), high angular resolution radio observations provide an important test of the ADAF emission mechanism. Since $L_R$ depends strongly on black hole mass and only weakly on X-ray luminosity, the successful measurement of nuclear radio emission could provide an estimate of black hole mass. Because the X-ray spectra produced by ADAFs are relatively hard, sources of this emission are natural candidates for contributing to the hard, $>2$ keV, background.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

Insu Yi, Stephen P. Boughn. 1997-10-14. Hard X-rays from Emission Line Galaxies and the X-ray Background: A Test for Advection Dominated Accretion with Radio Sources. https://arxiv.org/abs/astro-ph/9710147

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related papers

Two 3-Branes in Randall-Sundrum Setup and Current Acceleration of the Universe

Five-dimensional spacetimes of two orbifold 3-branes are studied, by assuming that {\em the two 3-branes are spatially homogeneous, isotropic, and independent of time}, following the so-called "bulk-based" approach. The most general form of the metric is obtained, and the corresponding field equations are divided into three groups, one is valid on each of the two 3-branes, and the third is valid in the bulk. The Einstein tensor on the 3-branes is expressed in terms of the discontinuities of the first-order derivatives of the metric coefficients. Thus, once the metric is known in the bulk, the distribution of the Einstein tensor on the two 3-branes is uniquely determined. As applications, we consider two different cases, one is in which the bulk is locally $AdS_{5}$, and the other is where it is vacuum. In some cases, it is shown that the universe is first decelerating and then accelerating. The global structure of the bulk as well as the 3-branes is also studied, and found that in some cases the solutions may represent the collision of two orbifold 3-branes. The applications of the formulas to the studies of the cyclic universe and the cosmological constant problem are also pointed out.

astro-ph

A Revolution in Science: the Eclipse Expeditions of 1919

The first direct experimental test of Einstein's theory of general relativity involved a pair of expeditions to measure the bending of light at a total solar eclipse that took place one hundred years ago, on 29 May 1919. So famous is this experiment, and so dramatic was the impact on Einstein himself, that history tends not to recognise the controversy that surrounded the results at the time. In this article, I discuss the experiment in its scientific and historical background context and explain why it was, and is, such an important episode in the development of modern physics.

astro-ph

State Vector Determination By A Single Tracking Satellite

Using only a single tracking satellite capable of only range measurements to an orbiting object in an unknown Keplerian orbit, it is theoretically possible to calculate the orbit and a current state vector. In this paper we derive an algorithm that can perform this calculation.

astro-ph