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Comparison of Simulated Contrast Performance of Different Phase Induced Amplitude Apodization (PIAA) Coronagraph Configurations

机译:不同相诱导幅度沉积(PIAA)凝血构型模拟对比性能的比较

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We compare the broadband contrast performances of several Phase Induced Amplitude Apodization (PIAA) coronagraph configurations through modeling and simulations. The basic optical design of the PIAA coronagraph is the same as NASA's High Contrast Imaging Testbed (HCIT) setup at the Jet Propulsion Laboratory (JPL). Using a deformable mirror and a broadband wavefront sensing and control algorithm, we create a "dark hole" in the broadband point-spread function (PSF) with an inner working angle (IWA) of 2(fλ/D)_(sky). We evaluate two systems in parallel. One is a perfect system having a design PIAA output amplitude and not having any wavefront error at its exit-pupil. The other is a realistic system having a design PIAA output amplitude and the measured residual wavefront error. We also investigate the effect of Lyot stops of various sizes when a postapodizer is and is not present. For the configurations simulated here with the first-generation PIAA mirrors, the best 7.5% broadband contrast value was ~1.5x 10 ~(-8).
机译:通过建模和仿真,比较几相诱导幅度沉积(PIAA)调节件的宽带对比表演。 PIAA胰岛素的基本光学设计与喷射推进实验室(JPL)的NASA的高对比度成像测试平台(HCIT)设置相同。使用可变形镜和宽带波前感测和控制算法,我们在宽带点扩展功能(PSF)中创建一个“暗孔”,内部工作角度(IWA)为2(Fλ/ D)_(天空)。我们并行评估两个系统。一个是一个完美的系统,具有设计PIAA输出幅度,而不是在其出口瞳孔处具有任何波前误差。另一个是具有设计PIAA输出幅度和测量的残余波前误差的现实系统。我们还调查当Poutoadizer是并且不存在时的各种尺寸的Lyot STOP的效果。对于使用第一代PIAA镜子模拟的配置,最佳的7.5%宽带对比度值为1.5×10〜(-8)。

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