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首页> 外文期刊>Journal of optics, A. Pure and applied optics: journal of the European Optical Society >Global wavefront sensing for interferometers and mosaic telescopes: the dispersed speckles principle
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Global wavefront sensing for interferometers and mosaic telescopes: the dispersed speckles principle

机译:干涉仪和镶嵌望远镜的整体波前感测:散斑原理

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摘要

The piston-sensing algorithm proposed by Labeyrie (Lardière et al 2002 IAU Technical Workshop vol 266, p 608) for diluted interferometric arrays can be extended to redundant segmented apertures such as those of extremely large telescopes and periodic hypertelescopes (Labeyrie 1996 Astron. Astrophys. 118 (Suppl.) 517). We first show that his 'dispersed image' input data cube is the tri-dimensional Fourier transform, in squared modulus form, of a 'wavefront bumpiness' function, a binary function of both aperture coordinates and the local optical path (or piston) error. It follows that Labeyrie's output cube is the tri-dimensional autocorrelation of the wavefront bumpiness. Using a tri-dimensional extension of Fienup's (1978 Opt. Lett. 3 1) phase retrieval algorithm, we show through numerical simulations that the multiple peaks appearing in columns of the output cube can be discriminated to retrieve the piston errors. About ten photons are needed per exposure, per sub-aperture and per spectral channel.
机译:Labeyrie(Lardièreet al 2002 IAU Technical Workshop vol 266,p 608)提出的用于稀疏干涉阵列的活塞传感算法可以扩展到多余的分段孔径,例如超大望远镜和周期性超望远镜的孔径(Labeyrie 1996 Astron。Astrophys。)。 118(Suppl。)517)。我们首先显示他的“分散图像”输入数据立方体是平方傅里叶形式的三维傅里叶变换,具有“波前凹凸”功能,孔径坐标和局部光路(或活塞)误差的二元函数。由此可见,Labeyrie的输出立方体是波前颠簸的三维自相关。使用Fienup(1978 Opt.Lett.3 1)相位检索算法的三维扩展,我们通过数值模拟表明,可以区分出现在输出立方体列中的多个峰,以检索活塞误差。每次曝光,每个子孔径和每个光谱通道大约需要十个光子。

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