论文标题

黑暗能源调查图像中未检测到的噪音

Noise from Undetected Sources in Dark Energy Survey Images

论文作者

Eckert, K., Bernstein, G. M., Amara, A., Amon, A., Choi, A., Everett, S., Gruen, D., Gruendl, R. A., Huff, E. M., Kuropatkin, N., Roodman, A., Sheldon, E., Yanny, B., Zhang, Y., Abbott, T. M. C., Aguena, M., Avila, S., Bechtol, K., Brooks, D., Burke, D. L., Rosell, A. Carnero, Kind, M. Carrasco, Carretero, J., Costanzi, M., da Costa, L. N., De Vicente, J., Desai, S., Diehl, H. T., Dietrich, J. P., Eifler, T. F., Evrard, A. E., Flaugher, B., Frieman, J., García-Bellido, J., Gaztanaga, E., Gschwend, J., Gutierrez, G., Hartley, W. G., Hollowood, D. L., Honscheid, K., James, D. J., Kron, R., Kuehn, K., Maia, M. A. G., Marshall, J. L., Melchior, P., Menanteau, F., Miquel, R., Ogando, R. L. C., Palmese, A., Paz-Chinchón, F., Plazas, A. A., Romer, A. K., Sanchez, E., Scarpine, V., Serrano, S., Sevilla-Noarbe, I., Smith, M., Soares-Santos, M., Suchyta, E., Swanson, M. E. C., Tarle, G., Thomas, D., Varga, T. N., Walker, A. R., Wester, W., Wilkinson, R. D., Zuntz, J., Collaboration, the DES

论文摘要

对于当前CCD技术的地面光学成像,源和天空背景光子到达中的泊松波动主导了噪声预算,并且很容易估算。但是,噪声的另一个组成部分是来自未发现的恒星和星系群的信号。使用将人造星系注入图像中,我们证明了黑暗能量调查(DES)图像中星系矩(用于弱重力透镜测量)的测量方差显着超过了泊松预测,高达30 \%,而当前软件的背景天空水平被当前软件高估了背景天空水平。通过互相关的“空”天空区域的不同图像,我们确定未发现的静态源(US)有显着的图像噪声贡献,平均而言,这些静态源以DES分辨率有轻度解决。将它们视为固定噪声源,我们计算了对Poisson噪声预期的协方差矩阵的校正。校正后的协方差矩阵匹配在注入的DES图像上测量的矩方差,达到5 \%以内。因此,我们有一种经验方法,可以在弱镜头测量中统计解释我们,而不是需要极深的天空模拟。我们还发现,本地天空的确定可以消除通量测量中的偏差,并在其他可量化但可量化的噪声中处于较小的惩罚中。

For ground-based optical imaging with current CCD technology, the Poisson fluctuations in source and sky background photon arrivals dominate the noise budget and are readily estimated. Another component of noise, however, is the signal from the undetected population of stars and galaxies. Using injection of artificial galaxies into images, we demonstrate that the measured variance of galaxy moments (used for weak gravitational lensing measurements) in Dark Energy Survey (DES) images is significantly in excess of the Poisson predictions, by up to 30\%, and that the background sky levels are overestimated by current software. By cross-correlating distinct images of "empty" sky regions, we establish that there is a significant image noise contribution from undetected static sources (US), which on average are mildly resolved at DES resolution. Treating these US as a stationary noise source, we compute a correction to the moment covariance matrix expected from Poisson noise. The corrected covariance matrix matches the moment variances measured on the injected DES images to within 5\%. Thus we have an empirical method to statistically account for US in weak lensing measurements, rather than requiring extremely deep sky simulations. We also find that local sky determinations can remove the bias in flux measurements, at a small penalty in additional, but quantifiable, noise.

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