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Looking for the least luminous BL Lacertae objects

机译:寻找发光度最低的BL Lacertae对象

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Among active galactic nuclei, BL Lac objects show extreme properties that have been interpreted as the effect of relativistic beaming on the emission from a plasma jet oriented close to the line of sight. The Doppler amplification of the jet emission makes them ideal targets for studying jet physics. In particular, low-power BL Lacs (LPBL) are very interesting because they probe the jet formation and emission processes at the lowest levels of accretion. However, they are difficult to identify since their emission is swamped by the radiation from the host galaxy in most observing bands. In this paper we propose a new LPBL selection method based on the mid-infrared emission, in addition to the traditional optical indices. We considered the radio-selected sample of Best & Heckman (2012, MNRAS, 421, 1569) and cross-matched it with the WISE all-sky survey. In a new diagnostic plane including the W2?W3 color and the Dn(4000) index, LPBL are located in a region scarcely populated by other sources. By filtering objects with small emission line equivalent width, we isolated 36 LPBL candidates up to redshift 0.15. Their radio luminosity at 1.4 GHz spans the range log?Lr = 39.2?41.5 [erg s-1]. Considering the completeness of our sample, we analyzed the BL Lac luminosity function (RLF), finding a dramatic paucity of LPBL with respect to the extrapolation of the RLF toward low power. This requires a break in the RLF located at log?Lr ~ 40.6 [erg s-1]. The consequent peak in the BL Lacs number density is possibly the manifestation of a minimum power required to launch a relativistic jet.
机译:在活跃的银河原子核中,BL Lac物体显示出极端的特性,这被解释为相对论性射束对靠近视线的等离子射流发射的影响。射流发射的多普勒放大使其成为研究射流物理的理想目标。特别是,低功率BL Lacs(LPBL)非常有趣,因为它们以最低的积聚水平探测射流的形成和发射过程。但是,由于在大多数观测波段中它们的发射被来自宿主星系的辐射淹没,因此很难识别它们。除传统的光学指标外,本文还提出了一种基于中红外发射的新的LPBL选择方法。我们考虑了Best&Heckman(2012,MNRAS,421,1569)的无线电选择样本,并将其与WISE全天候调查进行交叉匹配。在包括W2→W3颜色和Dn(4000)索引的新诊断平面中,LPBL位于几乎没有其他来源填充​​的区域中。通过过滤发射线等效宽度小的对象,我们隔离了36个LPBL候选对象,其红移最大为0.15。它们在1.4 GHz的无线电发光度范围为log?Lr = 39.2?41.5 [erg s-1]。考虑到样本的完整性,我们分析了BL Lac的光度函数(RLF),发现相对于RLF向低功率的外推而言,LPBL的功能非常有限。这就要求突破位于log?Lr〜40.6 [erg s-1]的RLF。 BL Lacs数密度的随之而来的峰值可能是发射相对论射流所需的最小功率的体现。

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