论文标题

从机器学习中的百万种类星体目录中的无线电源红移

Redshifts of radio sources in the Million Quasars Catalogue from machine learning

论文作者

Curran, S. J., Moss, J. P., Perrott, Y. C.

论文摘要

为了使用机器学习技术仅根据源的无线电谱即可获得光度降期,我们从百万的类星体目录中提取了无线电来源。其中44,119个具有光谱红移,模型验证所需的需要,并且可以获得光度法。使用无线电光谱属性作为功能,我们找不到一个模型,该模型可以可靠地预测红移,尽管有建议,模型随训练样本的大小而改善。使用近红外 - 光学 - 占脉冲带的幅度,我们基于具有所有必需的光度法的12,503个无线电源获得可靠的预测。从80:20的训练开始 - 验证拆分,这仅提供2501个验证来源,尽管对我们以前的SDSS模型的样本进行了训练,给出了所有12,503个来源的可比结果。这使我们有信心,Skymapper将在U,V,G,R,I,Z乐队中调查Southern Sky,可用于预测平方公里阵列检测到的无线电源的红移。通过使用机器学习将大部分样本中缺少的幅度算下,我们可以预测32,698个来源的红移,从样本的28%增加到74%,而成本将异常分数提高1.4。尽管“光学”频段数据证明是成功的,但在此阶段,我们不能排除给定足够的数据,这是克服相对无功能的无线电光谱所必需的足够数据。

With the aim of using machine learning techniques to obtain photometric redshifts based upon a source's radio spectrum alone, we have extracted the radio sources from the Million Quasars Catalogue. Of these, 44,119 have a spectroscopic redshift, required for model validation, and for which photometry could be obtained. Using the radio spectral properties as features, we fail to find a model which can reliably predict the redshifts, although there is the suggestion that the models improve with the size of the training sample. Using the near-infrared--optical--ultraviolet bands magnitudes, we obtain reliable predictions based on the 12,503 radio sources which have all of the required photometry. From the 80:20 training--validation split, this gives only 2501 validation sources, although training the sample upon our previous SDSS model gives comparable results for all 12,503 sources. This makes us confident that SkyMapper, which will survey southern sky in the u, v, g, r, i, z bands, can be used to predict the redshifts of radio sources detected with the Square Kilometre Array. By using machine learning to impute the magnitudes missing from much of the sample, we can predict the redshifts for 32,698 sources, an increase from 28% to 74% of the sample, at the cost of increasing the outlier fraction by a factor of 1.4. While the "optical" band data prove successful, at this stage we cannot rule out the possibility of a radio photometric redshift, given sufficient data which may be necessary to overcome the relatively featureless radio spectra.

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