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Early Science with the Large Millimeter Telescope: Detection of Dust Emission in Multiple Images of a Normal Galaxy at z > 4 Lensed by a Frontier Fields Cluster

机译:大毫米波望远镜的早期科学:检测由边界场簇在z> 4镜头下正常星系的多个图像中的尘埃排放

摘要

We directly detect dust emission in an optically detected, multiply imaged galaxy lensed by the Frontier Fields cluster MACSJ0717.5+3745. We detect two images of the same galaxy at 1.1 mm with the AzTEC camera on the Large Millimeter Telescope leaving no ambiguity in the counterpart identification. This galaxy, MACS0717_Az9, is at z > 4 and the strong lensing model (mu = 7.5) allows us to calculate an intrinsic IR luminosity of 9.7 x 10(10) L-circle dot and an obscured star formation rate of 14.6 +/- 4.5 M-circle dot yr(-1). The unobscured star formation rate from the UV is only 4.1 +/- 0.3 M-circle dot yr(-1), which means the total star formation rate (18.7 +/- 4.5 M-circle dot yr(-1)) is dominated (75%-80%) by the obscured component. With an intrinsic stellar mass of only 6.9 x 10(9) M circle dot, MACS0717_Az9 is one of only a handful of z. >. 4 galaxies at these lower masses that is detected in dust emission. This galaxy lies close to the estimated star formation sequence at this epoch. However, it does not lie on the dust obscuration relation (IRX-beta) for local starburst galaxies and is instead consistent with the Small Magellanic Cloud attenuation law. This remarkable lower mass galaxy, showing signs of both low metallicity and high dust content, may challenge our picture of dust production in the early universe.
机译:我们直接检测由Frontier Fields群集MACSJ0717.5 + 3745拍摄的光学检测的,多重成像的星系中的尘埃排放。我们使用大毫米望远望远镜上的AzTEC相机在1.1毫米处检测到两个相同星系的图像,在对应的识别中没有任何歧义。这个星系MACS0717_Az9的z> 4,并且强大的透镜模型(mu = 7.5)使我们能够计算出9.7 x 10(10)L圆点的固有IR发光度和14.6 +/-的模糊恒星形成率4.5 M圆点yr(-1)。紫外线的恒星形成率仅为4.1 +/- 0.3 M圆点yr(-1),这意味着总的恒星形成率(18.7 +/- 4.5 M圆点yr(-1)占主导地位。 (75%-80%)。具有仅6.9 x 10(9)M圆点的固有恒星质量,MACS0717_Az9是少数z之一。 >。在尘埃排放中检测到的这些质量较低的4个星系。在这个时期,这个星系接近于估计的恒星形成序列。但是,它不依赖于局部星爆星系的尘埃模糊关系(IRX-beta),而是与小麦哲伦星云衰减定律一致。这个引人注目的低质量星系,同时显示出低金属性和高尘埃含量的迹象,可能会挑战我们早期宇宙尘埃产生的景象。

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