论文标题

一种揭示不完整的天文信号的方法:应用附近星系项目的多行成像

A Method for Unmasking Incomplete Astronomical Signals: Application to CO Multi-line Imaging of Nearby Galaxies Project

论文作者

Cooray, Suchetha, Takeuchi, Tsutomu T., Yoda, Moe, Sorai, Kazuo

论文摘要

光度测量以图像形式提供了令人难以置信的天文信息。但是,天文图像通常包含可能通过歪曲强度或污染目录作为人造物体来严重阻碍科学分析的文物。这些受影响的像素需要在任何数据减少管道中掩盖并处理。在本文中,我们提出了一种灵活的迭代算法,以恢复缺乏某些像素的天文图像。我们证明了该方法在使用Nobeyama无线电天文台(NRO)的45M望远镜(NRO)进行的附近星系(COME)项目的CO多线成像中的某些强度校准源图像的应用。由于强度校准源图像中的检测器误差,该算法恢复了伪像。在调查中,恢复的图像用于校准147个观察到的星系图中的11个。测试表明,即使对于噪声图像(SNR = 2.4),该算法也可以在近1%误差下恢复测量的强度,尽管缺乏图像的重要部分。我们介绍了重建算法的表述,讨论其扩展到其他天文信号的可能性和局限性以及即将到来的应用程序的结果。

Photometric surveys have provided incredible amounts of astronomical information in the form of images. However, astronomical images often contain artifacts that can critically hinder scientific analysis by misrepresenting intensities or contaminating catalogs as artificial objects. These affected pixels need to be masked and dealt with in any data reduction pipeline. In this paper, we present a flexible, iterative algorithm to recover (unmask) astronomical images where some pixels are lacking. We demonstrate the application of the method on some intensity calibration source images in CO Multi-line Imaging of Nearby Galaxies (COMING) Project conducted using the 45m telescope at Nobeyama Radio Observatory (NRO). The proposed algorithm restored artifacts due to a detector error in the intensity calibration source images. The restored images were used to calibrate 11 out of 147 observed galaxy maps in the survey. The tests show that the algorithm can restore measured intensities at sub 1% error even for noisy images (SNR = 2.4), despite lacking a significant part of the image. We present the formulation of the reconstruction algorithm, discuss its possibilities and limitations for extensions to other astronomical signals and the results of the COMING application.

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