论文标题

XMM-LSS /视频深场的VLA成像1-2 GHz

VLA imaging of the XMM-LSS / VIDEO deep field at 1-2 GHz

论文作者

Heywood, I., Hale, C. L., Jarvis, M. J., Makhathini, S., Peters, J. A., Sebokolodi, M. L. L., Smirnov, O. M.

论文摘要

现代射电望远镜通常达到正常星系是主要观察到的人口的深度。意识到无线电作为恒星形成的示踪剂和黑洞活动在宇宙时间的潜力涉及在代表性的卷上实现此类深度,而无线电则构成了较大的多波长运动的一部分。为了追求这一点,我们使用了Karl G. Jansky非常大的数组(VLA)来$ \ sim $ \ sim $ 5度$^{2} $的视频/xmm-lss fellagalactic Deep Field在1--2 GHz。我们实现了16 $ $ $ jy beam $^{ - 1} $的中间深度,其角度分辨率为4.5 \ arcsec。与XMM-LSS现有无线电观察结果进行比较,展示了升级VLA的调查速度的提高:我们覆盖了面积的2.5倍,并将深度增加$ \ sim $ \ sim $ 20 \%\%\%\%。需要方向依赖性的校准和宽视野成像来抑制甚至适度亮度的离轴源的误差模式。我们从最终的马赛克中得出了一个包含5,762个来源的目录。子带成像为3,458(60 \%)源提供带内光谱指数,平均光谱比规范同步斜率低于1 MJY。观测值的位置和通量密度准确性以及差异源数量与现有测量值非常吻合。本文伴随着图像和目录的公开发布。

Modern radio telescopes are routinely reaching depths where normal starforming galaxies are the dominant observed population. Realising the potential of radio as a tracer of star formation and black hole activity over cosmic time involves achieving such depths over representative volumes, with radio forming part of a larger multiwavelength campaign. In pursuit of this we used the Karl G. Jansky Very Large Array (VLA) to image $\sim$5 deg$^{2}$ of the VIDEO/XMM-LSS extragalactic deep field at 1--2 GHz. We achieve a median depth of 16 $μ$Jy beam$^{-1}$ with an angular resolution of 4.5\arcsec. Comparisons with existing radio observations of XMM-LSS showcase the improved survey speed of the upgraded VLA: we cover 2.5 times the area and increase the depth by $\sim$20\% in 40\% of the time. Direction-dependent calibration and wide-field imaging were required to suppress the error patterns from off-axis sources of even modest brightness. We derive a catalogue containing 5,762 sources from the final mosaic. Sub-band imaging provides in-band spectral indices for 3,458 (60\%) sources, with the average spectrum becoming flatter than the canonical synchrotron slope below 1 mJy. Positional and flux-density accuracy of the observations, and the differential source counts are in excellent agreement with those of existing measurements. A public release of the images and catalogue accompanies this article.

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