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Design and demonstration of hybrid Lyot coronagraph masks for improved spectral bandwidth and throughput

机译:混合Lyot冠冕仪光罩的设计和演示,可改善光谱带宽和通量

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Coronagraph focal-plane occulting masks have generally been described in terms of attenuation profiles free of any phase shift. However, phase shifts are expected and observed in physical occulting masks, with significant effect at billion-to-one coronagraph contrast levels in spectrally broad light, as required for the direct imaging and spectroscopy of nearby exoplanet systems.We report progress in the design and fabrication of hybrid focal-plane masks for Lyot coronagraphy. These masks, composed of thickness-profiled metallic and dielectric thin films superimposed on a glass substrate, are in principle band-limited in both the real and imaginary parts of the occulter characteristics. Together with a deformable mirror for control of wavefront phase, these masks offer Lyot coronagraph contrast performance better than 10~(-9) over spectral bandwidths of 30% or more with throughput efficiencies up to 67%. We report recent laboratory coronagraph demonstrations with vacuum-deposited nickel masks on fused silica, and preparations for the fabrication of masks with superimposed metal and dielectric layers.
机译:通常已经根据没有任何相移的衰减轮廓描述了日冕仪焦平面掩蔽掩模。然而,相移是在物理掩星中预期并观察到的,这对光谱上较宽的光在十亿比一的日冕仪对比度水平有显着影响,这是对邻近系外行星系统进行直接成像和光谱分析所必需的。 我们报告了用于Lyot冠层造影的混合焦平面掩模的设计和制造方面的进展。这些掩膜由叠加在玻璃基板上的厚度轮廓化的金属薄膜和介电薄膜组成,原则上在隐匿者特征的实部和虚部均受频带限制。这些掩模与可变形的反射镜一起用于控制波前相位,在30%或更高的光谱带宽上,Lyot冠状动脉造影仪的对比度性能优于10〜(-9),吞吐效率高达67%。我们报告了最近的实验室日冕仪演示,演示了在熔融石英上真空沉积的镍掩模,以及制备具有金属和介电层叠加的掩模的准备工作。

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