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The XXL Survey

机译:XXL调查

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摘要

We present the 25 square-degree GMRT-XXL-N 610 MHz radio continuum survey, conducted at 50 cm wavelength with the Giant Metrewave Radio Telescope (GMRT) towards the XXL Northern field (XXL-N). We combined previously published observations of the XMM-Large Scale Structure (XMM-LSS) field, located in the central part of XXL-N, with newly conducted observations towards the remaining XXL-N area, and imaged the combined data-set using the Source Peeling and Atmospheric Modeling (SPAM) pipeline. The final mosaic encompasses a total area of 30.4 square degrees, with rms <150? μ Jy beam~(?1)over 60% of the area. The rms achieved in the inner 9.6 square degree area, enclosing the XMM-LSS field, is about 200? μ Jy beam~(?1), while that over the outer 12.66 square degree area (which excludes the noisy edges) is about 45? μ Jy beam~(?1). The resolution of the final mosaic is 6.5 arcsec. We present a catalogue of 5434 sources detected at ≥7 ×rms. We verify, and correct the reliability of, the catalog in terms of astrometry, flux, and false detection rate. Making use of the (to date) deepest radio continuum survey over a relatively large (2 square degree) field, complete at the flux levels probed by the GMRT-XXL-N survey, we also assess the survey’s incompleteness as a function of flux density. The radio continuum sensitivity reached over a large field with a wealth of multi-wavelength data available makes the GMRT-XXL-N 610 MHz survey an important asset for studying the physical properties, environments and cosmic evolution of radio sources, in particular radio-selected active galactic nuclei (AGN).
机译:我们介绍了25平方度的GMRT-XXL-N 610 MHz无线电连续谱调查,该观测是在50 cm波长下用巨型水波射电望远镜(GMRT)朝XXL北方场(XXL-N)进行的。我们将位于XXL-N中部的XMM-大比例尺结构(XMM-LSS)场的先前发布的观测值与对剩余XXL-N区域的最新观测值进行了合并,并使用源去皮和大气建模(SPAM)管道。最终镶嵌图的总面积为30.4平方度,均方根值<150? μJy光束〜(?1)超过面积的60%。围绕XMM-LSS场的9.6平方英寸内部区域的均方根值约为200? μJy光束〜(?1),而外部12.66平方度区域(不包括嘈杂边缘)上的光束约为45?。 μJy光束〜(?1)。最终镶嵌的分辨率为6.5 arcsec。我们提供了以≥7×rms检测到的5434个源的目录。我们从天体测量,通量和错误检测率方面验证并纠正目录的可靠性。利用在相对较大的(2平方度)场上的(迄今为止)最深的无线电连续测量,在GMRT-XXL-N测量所探测的通量水平上完成,我们还评估了测量的不完整性与通量密度的关系。 GMRT-XXL-N 610 MHz勘测在大范围内达到了连续无线电灵敏度,并提供了大量的多波长数据,这使GMRT-XXL-N 610 MHz调查成为研究无线电源(尤其是无线电选源)的物理特性,环境和宇宙演化的重要资产活跃银河核(AGN)。

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