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MIPS 24 μm OBSERVATIONS OF THE HUBBLE DEEP FIELD SOUTH: PROBING THE IR-RADIO CORRELATION OF GALAXIES AT z1

机译:MIPS 24μm南方深空场观测:z> 1时星系的红外相关性

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We present MIPS 24 μm observations of the Hubble Deep Field South taken with the Spitzer Space Telescope. The resulting image is 254 arcmin2 in size and has a sensitivity ranging between ~12 and ~30 μJy rms, with a median sensitivity of ~20 μJy rms. A total of 495 sources have been cataloged with a signal-to-noise ratio greater than 5σ. The source catalog is presented as well as source counts which have been corrected for completeness and flux boosting. The IR sources are then combined with MUSYC optical/NIR and ATHDFS radio observations to obtain redshifts and radio flux densities of the sample. We use the IR/radio flux density ratio (q 24) to explore the IR-radio correlation for this IR sample and find q 24 = 0.71 ± 0.31 for sources detected in both IR and radio. The results are extended by stacking IR sources not detected in the radio observations and we derive an average q 24 for redshift bins between 0 z 2.5. We find that the high-redshift (z1) sources have an average q 24 ratio which is better fit by local LIRG SEDs rather than local ULIRG SEDs, indicating that high-redshift ULIRGs differ in their IR/radio properties. So, ULIRGs at high-redshift have SEDs different from those found locally. Infrared-faint radio sources are examined, and while nine radio sources do not have an MIPS detection and are therefore radio-loud active galactic nuclei (AGNs), only one radio source has an extreme IRAC 3.6 μm to radio flux density ratio indicating it is a radio-loud AGN at z1.
机译:我们用Spitzer太空望远镜对哈勃深场南进行了MIPS 24μm观测。生成的图像大小为254 arcmin2,灵敏度在〜12和〜30μJyrms之间,中位灵敏度为〜20μJyrms。总共对495个信号源进行了分类,其信噪比大于5σ。列出了源目录以及已针对完整性和通量提升进行过校正的源计数。然后将红外源与MUSYC光学/ NIR和ATHDFS无线电观测相结合,以获得样品的红移和无线电通量密度。我们使用IR /无线电通量密度比(q 24)来探索此IR样品的IR-无线电相关性,发现在IR和无线电中检测到的源的q 24 = 0.71±0.31。通过堆叠在无线电观测中未检测到的IR源来扩展结果,我们得出0到z≤2.5的红移区的平均值q 24。我们发现高红移(z> 1)源的平均q 24比值更适合于本地LIRG SED,而不是本地ULIRG SED,这表明高红移ULIRG的IR /无线电特性有所不同。因此,处于高红移状态的ULIRG具有与本地不同的SED。检查了红外微弱的无线电源,尽管有9个无线电源未进行MIPS检测,因此是放射性大声活跃银河核(AGN),但只有一个无线电源的IRAC与发射通量密度之比为3.6μm,表明它是z> 1的无线电响AGN。

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