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Parasitic interference in classical and nulling stellar interferometry

机译:经典和零星干涉仪中的寄生干扰

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摘要

A variety of instrumental effects can corrupt the observable quantities in optical or nulling stellar interferometry. One such effect is parasitic interference, which can occur inside an interferometric instrument. Because of diffraction effects related to beam propagation along finite size optics, or parasitic reflections inside transmitting optics, a coherent crosstalk may occur between the beams and create a parasitic interference pattern superimposed on the genuine one. We developed an analytical approach to describe the impact of this effect on the observables of classical and nulling stellar interferometers. Considering classical interferometry, we show that differential phase and closure phase are both corrupted, depending on the crosstalk level and the residual piston between the beams. Considering typical specifications of piston correction of ground-based interferometers (≍ 100 nm), the detection of hot Jupiter-like planets by differential phase implies a tolerance on the parasitic flux to about 5% of the incident intensity. Also, we show that the closure phase relation does not remove this parasitic contribution. The corresponding corrupted closure phase is not zero for an unresolved source, and depends on the residual piston. Considering nulling interferometry, we show that parasitic effects modify the transmission map level, depending on the crosstalk level and the phase shift between primary and secondary beams. In the extreme case of a pi-phase shift, the crosstalk effect implies a decrease of the final output signal-to-noise ratio. Numerical simulations, adapted to handle consistently crosstalk, are then performed to estimate this degradation and validate our theoretical study.
机译:各种仪器效果可能会破坏光学干涉或零星状干涉测量中的可观测量。这种影响之一就是寄生干扰,它可能会在干涉仪内部发生。由于与光束沿有限尺寸光学器件传播相关的衍射效应,或与透射光学器件内部的寄生反射有关,因此在光束之间可能会产生相干串扰,并产生叠加在真正光束上的寄生干涉图样。我们开发了一种分析方法来描述此效应对经典和零位恒星干涉仪的观测值的影响。考虑到经典的干涉测量法,我们表明差分相和闭合相都被破坏,这取决于串扰水平和光束之间的残留活塞。考虑到基于地面的干涉仪的活塞校正的典型规格(≍100 nm),通过差分相位检测类似木星的热行星意味着对寄生通量的耐受性约为入射强度的5%。此外,我们显示了闭合阶段关系并没有消除这种寄生影响。对于未解析的源,相应的损坏的关闭阶段不为零,并取决于剩余的活塞。考虑调零干涉测量法,我们表明寄生效应会改变传输图的电平,具体取决于串扰电平以及主光束和副光束之间的相移。在pi相移的极端情况下,串扰效应意味着最终输出信噪比的降低。然后进行适合于始终如一地处理串扰的数值模拟,以估计这种劣化并验证我们的理论研究。

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