论文标题
验证HST和其他空间观测的PSF模型
Validation of PSF Models for HST and Other Space-Based Observations
论文作者
论文摘要
即将进行的基于空间的观测将需要高质量的点传播功能(PSF)模型来进行弱重力透镜测量。生成这些模型的一种方法是使用基于已知望远镜光学器件的波前模型。我们提出了一个经验框架,用于验证此类模型,以确认它们通过将模型与所观察到的隔离恒星的光分布进行比较,将实际PSF与需求匹配。我们将此框架应用于Tiny Tim,这是为Hubble Space望远镜(HST)生成模型PSF的标准工具,对HST高级相机拍摄的图像测试了其模型,以在广阔的野外通道中进行调查。我们表明,在默认配置中,Tiny Tim的模型与观察到的PSF有很大差异,最著名的是它们的尺寸。我们发现,可以通过安装完整的Zernike多项式系数来提高微小PSF的质量,这些系数的特征是光学元件的特征,即在大多数使用情况下,模型和观察到的PSF之间差异的实际意义可忽略不计,从而导致添加性和多重性偏置均与大约4e-4的订单相同。我们还表明,通过使用我们提供的一套更新的Zernike系数,可以保留大多数此改进。
Forthcoming space-based observations will require high-quality point-spread function (PSF) models for weak gravitational lensing measurements. One approach to generating these models is using a wavefront model based on the known telescope optics. We present an empirical framework for validating such models to confirm that they match the actual PSF to within requirements by comparing the models to the observed light distributions of isolated stars. We apply this framework to Tiny Tim, the standard tool for generating model PSFs for the Hubble Space Telescope (HST), testing its models against images taken by HST's Advanced Camera for Surveys in the Wide Field Channel. We show that Tiny Tim's models, in the default configuration, differ significantly from the observed PSFs, most notably in their sizes. We find that the quality of Tiny Tim PSFs can be improved through fitting the full set of Zernike polynomial coefficients which characterise the optics, to the point where the practical significance of the difference between model and observed PSFs is negligible for most use cases, resulting in additive and multiplicative biases both of order approximately 4e-4. We also show that most of this improvement can be retained through using an updated set of Zernike coefficients, which we provide.