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BIREFRINGENT ACHROMATIC PHASE SHIFTERS FOR NULLING INTERFEROMETRY AND PHASE CORONAGRAPHY

机译:用于零干涉和相冠状图的双折射交替相移器

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摘要

Achromatic Phase Shifters are mandatory components in the field of hulling interferometry and phase coronagraphy. Indeed, in order to detect faint objects (e.g. exo-planets) around a central bright star, one must attenuate the latter by all means. To do this, the most efficient way is to "create" a destructive interference on the blinding light. This technique is called nulling and is common to the two fields mentioned above; the first with several telescopes, the second with only a single "aperture. How does it work? The incoming light from the central object is divided into several beams on which one applies a differential π phase shift by means of these so-called phase shifters. Then, when the beams are properly recombined together, they simply subtract from each other. "Achromatic" means that we can apply this process over a large spectral bandwidth. This quality will not only be required for the detection and characterization of exo-planets but also for several other astrophysical objects involving huge contrasts like dust shells around young bright stars, AGN,... The proposed birefringent phase shifters and the original implementation schemes we suggest should provide flexible and powerful solutions for these purposes.
机译:消色差移相器是船壳干涉测量法和相冠层照相术领域中必不可少的组成部分。实际上,为了检测中央明亮恒星周围的微弱物体(例如系外行星),必须通过各种方法使其衰减。为此,最有效的方法是对盲光“产生”破坏性干涉。这项技术称为归零,是上述两个字段所共有的。第一个带有数个望远镜,第二个只有一个“孔径”。它是如何工作的?来自中心物体的入射光被分成几束,借助这些所谓的移相器,它们对它们施加了差分π相移。然后,当光束正确地重组在一起时,它们彼此简单地相减:“消色差”意味着我们可以在较大的光谱带宽上应用此过程,这种质量不仅需要对系外行星的检测和表征但是对于其他一些涉及巨大反差的天体物体,例如年轻明亮恒星周围的尘埃壳,AGN等,我们建议的双折射移相器和我们建议的原始实现方案也应为此提供灵活而强大的解决方案。

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