首页> 外文期刊>Astronomy and astrophysics >Towards emulating cosmic shear data: revisiting the calibration of the shear measurements for the Kilo-Degree Survey
【24h】

Towards emulating cosmic shear data: revisiting the calibration of the shear measurements for the Kilo-Degree Survey

机译:走向模拟宇宙剪切数据:重新进行千度测量的剪切测量的校准

获取原文
           

摘要

Exploiting the full statistical power of future cosmic shear surveys will necessitate improvements to the accuracy with which the gravitational lensing signal is measured. We present a framework for calibrating shear with image simulations that demonstrates the importance of including realistic correlations between galaxy morphology, size, and more importantly, photometric redshifts. This realism is essential to ensure that selection and shape measurement biases can be calibrated accurately for a tomographic cosmic shear analysis. We emulate Kilo-Degree Survey (KiDS) observations of the COSMOS field using morphological information from Hubble Space Telescope imaging, faithfully reproducing the measured galaxy properties from KiDS observations of the same field. We calibrate our shear measurements from lens fit, and find through a range of sensitivity tests that lens fit is robust and unbiased within the allowed two per cent tolerance of our study. Our results show that the calibration has to be performed by selecting the tomographic samples in the simulations, consistent with the actual cosmic shear analysis, because the joint distributions of galaxy properties are found to vary with redshift. Ignoring this redshift variation could result in misestimating the shear bias by an amount that exceeds the allowed tolerance. To improve the calibration for future cosmic shear analyses, it will also be essential to correctly account for the measurement of photometric redshifts, which requires simulating multi-band observations.
机译:利用未来宇宙剪切勘测的全部统计能力将有必要提高引力透镜信号的测量精度。我们提供了一个用于通过图像模拟校准剪切的框架,该框架证明了包括银河形态,大小以及更重要的是光度红移之间的现实相关性的重要性。这种现实对于确保可以针对层析X射线断层分析准确地校准选择和形状测量偏差至关重要。我们使用哈勃太空望远镜成像的形态学信息模拟COSMOS场的千度测量(KiDS)观测值,忠实地从同一场的KiDS观测值中再现了所测量的星系特性。我们通过镜片验配校准了剪切测量值,并通过一系列灵敏度测试发现,镜片验配在我们的研究允许的2%公差范围内是坚固且无偏的。我们的结果表明,必须在模拟中选择层析成像样本来执行校准,这与实际的宇宙剪切分析相一致,因为发现银河属性的联合分布会随红移而变化。忽略此红移变化可能会导致将剪切偏差估计为超出允许公差的数量。为了改善将来的宇宙剪切分析的校准,正确地考虑光度红移的测量也非常重要,这需要模拟多波段观测。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号