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Toward 1010 contrast for terrestrial exoplanet detection:demonstration of wavefront correction in a shaped-pupil coronagraph

机译:朝向1010年陆地外开产外检测的对比:瞳孔凝血剂中波前校正的示范

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The Shaped Pupil Coronagraph (SPC) is a high-contrast imaging system pioneered at Princeton for detection of extra-solar earthlike planets. It is designed to achieve 10"'° contrast at an inner working angle of 4A/D. However, a critical requirement in attaining this contrast level in practice is the ability to control wavefront phase and amplitude aberrations to at least ,1/10 in rms phase and 1/1000 rms amplitude, respectively. Furthermore, this has to be maintained over a large spectral band. The High Contrast Imaging Testbed (HCIT) at the Jet Propulsion Lab (JPL) is a state-of-the-art facility for studying high contrast imaging systems and fine wavefront control methods. It consists of a vacuum chamber containing a configurable coronagraph setup with a Xinetics deformable mirror. In this paper, we present the results of testing Princeton's SPC in JPL's HCIT. In particular, we present the achievement of 4*10~(-5) contrast using a speckle nulling algorithm, and demonstrate that this contrast is maintained across wavelengths of 785, 836nm, and for broadband light having 10% bandwidth around 800nm.
机译:成形的瞳孔僵尸(SPC)是在普林斯顿开创的高对比度成像系统,用于检测太阳能地球状行星。它设计用于在4A / D的内部工作角度实现10“'对比。然而,在实践中实现这种对比度水平的关键要求是能够将波前相和幅度像差控制为至少1/10 RMS相和1/1000 rms幅度。此外,这必须保持在一个大的光谱带上。喷射推进实验室(JPL)的高对比度成像(HCIT)是最先进的设施用于研究高对比度成像系统和精细的波前控制方法。它包括一个真空室,该吸尘器组成,该真空室包含一种具有型电性可变形镜的可配置的癌。在本文中,我们在JPL的HCIT中展示了普林斯顿SPC的结果。特别是,我们展示了使用散斑空算法的4×10〜(-5)对比度的成就,并证明了这种对比度在785,836nm的波长上保持,并且对于大约800nm的10%带宽的宽带光保持。

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