Seo Byoung-Joon, Nissly Carl, Troy Mitchell, Angeli George, Ford Virginia, Stepp Larry, Williams Eric
Jet Propulsion Laboratory, Pasadena, California 91109, USA.
Appl Opt. 2013 Jun 10;52(17):3910-22. doi: 10.1364/AO.52.003910.
We have investigated two approximation methods for estimating the normalized point source sensitivity (PSSN), which is a recently developed optical performance metric for telescopes. One is an approximation based on the power spectral density (PSD) of the wavefront error. The other is the root-square-sum of the wavefront slope. We call these approximations β approximation and SlopeRMS approximation, respectively. Our analysis shows that for the Thirty Meter Telescope (TMT), the uncertainty of the β approximation is less than 1×10(-3) if the PSSN is better than 0.95, assuming the input PSD estimation is accurate. In addition, we find that the SlopeRMS approximation is a simple method for estimating the worst-case PSSN value in the specific situation when the PSSN is dominated by low-frequency aberrations. Therefore, the SlopeRMS approximation is expected to be useful for specifying a mirror surface for mirror vendors. Accordingly, TMT has a plan to adopt the SlopeRMS approximation for its M2 and M3 polishing specification.
我们研究了两种用于估算归一化点源灵敏度(PSSN)的近似方法,PSSN是一种最近开发的用于望远镜的光学性能指标。一种是基于波前误差功率谱密度(PSD)的近似方法。另一种是波前斜率的均方根。我们分别将这些近似方法称为β近似和斜率均方根(SlopeRMS)近似。我们的分析表明,对于三十米望远镜(TMT),假设输入的PSD估计准确,如果PSSN优于0.95,则β近似的不确定性小于1×10⁻³。此外,我们发现,当PSSN由低频像差主导时,在特定情况下,斜率均方根近似是一种估算最坏情况PSSN值的简单方法。因此,斜率均方根近似有望用于为镜面供应商指定镜面表面。相应地,TMT计划在其M2和M3抛光规范中采用斜率均方根近似。