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Improvement in the rejection rate of a nulling interferometer by spatial filtering

机译:通过空间滤波改善零位干涉仪的抑制率

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摘要

We propose applying the techniques of spatial filtering to the concept of interferometric coronography. In such a system, provided that the object being studied is not resolved by the individual apertures of the interferometric array, the beams can be considered as coherent or, more exactly, single mode. Hence spatial filtering allows one to cleanse the beams of imperfections generated by defects on the optical components of the interferometer and thus to obtain very high rejection rates in the destructive output of the interferometer (coronographic output) for an on-axis star. Numerical simulations show that the very stringent constraints on the optical quality of a space IR interferometer aimed at detecting extra-solar planets can be relaxed to values achievable with current technology. In particular, we show flu the difficulties induced by dust scattering, small micrometeorite impacts on the primary mirror, an high-frequency ripples of polishing residuals can be eliminated by simple pinhole spatial filtering. The effects, however, will be less dramatic on large-scale defects such as coating defects and pointing errors in the telescopes. # 1997 Optical Society of America
机译:我们建议将空间滤波技术应用于干涉冠状动脉造影的概念。在这样的系统中,假设所研究的对象没有被干涉阵列的各个孔分辨,则光束可以被认为是相干的,或更确切地说,是单模的。因此,空间滤波允许清洁由干涉仪的光学部件上的缺陷产生的缺陷束,从而在干涉仪的破坏性输出(冠状图输出)中获得非常高的拒绝率,用于同轴星。数值模拟表明,旨在检测太阳系外行星的空间红外干涉仪的光学质量非常严格的约束条件可以放宽到当前技术可达到的值。特别是,我们展示了由灰尘散射,微小陨石对主镜的影响所引起的困难,通过简单的针孔空间滤波可以消除抛光残留物的高频波纹。但是,对于诸如镀膜缺陷和望远镜指向误差之类的大规模缺陷,这种影响将不那么明显。 #1997美国眼镜学会

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