Low- and High- z Highly Accreting Quasars in the 4D Eigenvector 1 Context

P. Marziani, J. Sulentic, C. Negrete, D. Dultzin, M. D’Onofrio, A. Olmo, Deborah Martínez-Aldama
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引用次数: 7

Abstract

Abstract Highly accreting quasars are characterized by distinguishing properties in the 4D eigenvector 1 parameter space that make them easily recognizable over a broad range range of redshift and luminosity. The 4D eigenvector 1 approach allows us to define selection criteria that go beyond the restriction to Narrow Line Seyfert is identified at low redshift. These criteria are probably able to isolate sources with a defined physical structure i.e., a geometrically thick, optically thick advection-dominated accretion disk (a “slim” disk). We stress that the importance of highly accreting quasars goes beyond the understanding of the details of their physics: their Eddington ratio is expected to saturate toward values of order unity, making them possible cosmological probes.
四维特征向量1中的低z和高z高吸积类星体
高吸积类星体在四维特征向量1参数空间中具有独特的特性,使它们在很宽的红移和光度范围内易于识别。4D特征向量1方法允许我们定义超越限制的选择标准,窄线塞弗特在低红移下被识别。这些标准可能能够分离出具有确定物理结构的源,即几何厚度,光学厚度的平流占主导的吸积盘(“薄”盘)。我们强调,高吸积类星体的重要性超出了对其物理细节的理解:它们的爱丁顿比预计将趋于有序统一的值,使它们成为可能的宇宙探测器。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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