Title of article :
The Black Hole Masses and Radio Characteristics of Radio Quasars
Author/Authors :
Ding-rong، نويسنده , , Xiong and Xiong، نويسنده , , Zhang and Yong-gang، نويسنده , , Zheng and Bang-rong، نويسنده , , Huang and Li-sheng، نويسنده , , Mao and Wen-guang، نويسنده , , Liu، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2013
Pages :
13
From page :
28
To page :
40
Abstract :
In this paper, we collect the redshift, bolometric luminosity, the full- width at half maximum of the Hβ emission line, the monochromatic luminosity at 5100 Å and the radio loudness for the sample of 117 quasars, including 20 radio-quiet quasars (RQQs) and 97 radio-loud quasars (RLQs). With the reverberation mapping method we calculate the black hole mass and Eddington ratio for this sample, as well as the radio luminosity from the total 5 GHz flux density. By analyzing the correlations among them, we obtain the following conclusions: (1) The black hole mass has weak correlations with the bolometric luminosity, radio loudness and radio luminosity for the RQQs, and has strong correlations with the bolometric luminosity, radio loudness and radio luminosity for the RLQs; (2) For the RQQs, the bolometric luminosity has weak correlations with the radio luminosity and 5 100 Å monochromatic luminosity, and for the RLQs, the bolometric luminosity has strong correlations with the radio luminosity and 5 100 Å monochromatic luminosity; (3) The RQQs and RLQs differ in the distributions of the black hole mass, emission line width and Eddington ratio. Based on these results, we suggest: the difference of emission line width between RQQs and RLQs is probably caused by the difference of black hole mass; the fundamental difference between RQQs and RLQs is caused by the difference of their intrinsic physical nature; the black hole mass, black hole spin, Eddington ratio, and host galaxy morphology are the important parameters to explain the origin of radio loudness and the double-peaked distribution; and the radio jet is closely related with the accretion rate of disk.
Keywords :
Galaxies: Active—quasars: General—Black hole physics—radio con-tinuum: Galaxies
Journal title :
Chinese Astronomy and Astrophysics
Serial Year :
2013
Journal title :
Chinese Astronomy and Astrophysics
Record number :
2264178
Link To Document :
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