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首页> 外文期刊>Journal of Experimental and Theoretical Physics >Physical Foundations of Achromatic Nulling Interferometry for Stellar Coronagraphy
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Physical Foundations of Achromatic Nulling Interferometry for Stellar Coronagraphy

机译:恒星冠冕的消色差零干涉法的物理基础

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摘要

We propose an achromatic interferometer for the observation of a faint off-axis light source against the background of a bright on-axis light source. The on-axis source and its copy acquire an achromatic phase shift by 180 and interfere with a phase difference of pi. The achromatic phase shift is attributable to the geometric phase in the three-dimensional interferometer scheme. Interference spatially separates the nulled and bright fields of the on-axis source, redirecting them on opposite sides of the beamsplitter. Interference does not attenuate the field of the off-axis source and redirects it with an equal intensity on both sides of the beamsplitter. We consider the principle of operation of the nulling interferometer and constraints on the attenuation of an extended source due to the decrease in coherence. The laboratory breadboard and experiment are briefly described.
机译:我们提出了一种消色差干涉仪,用于在明亮的同轴光源的背景下观察微弱的离轴光源。同轴源及其副本获得180的消色差相移并干扰pi的相位差。消色差相移可归因于三维干涉仪方案中的几何相位。干扰在空间上将同轴光源的零视场和明视场分开,将它们重定向到分束器的相对侧。干扰不会衰减离轴光源的场,并且会在分束器的两侧以相同的强度重定向它。我们考虑了归零干涉仪的工作原理以及由于相干性降低而对扩展光源衰减的限制。简要描述了实验室实验板和实验。

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