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Noise in optical synthesis images. II. Sensitivity of an ^nC_2 interferometer with bispectrum imaging

机译:光学合成图像中的噪声。二。双光谱成像的^ nC_2干涉仪的灵敏度

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摘要

We study the imaging sensitivity of a ground-based optical array of n apertures in which the beams are combined pairwise, as in radio-interferometric arrays, onto n(n - 1)/2 detectors, the so-called ^nC_2 interferometer. Groundbased operation forces the use of the fringe power and the bispectrum phasor as the primary observables rather than the simpler and superior observable, the Michelson fringe phasor. At high photon rates we find that bispectral imaging suffers no loss of sensitivity compared with an ideal array (space based) that directly uses the Michelson fringe phasor. In the opposite limit, when the number of photons per spatial coherence area per coherence time drops below unity, the sensitivity of the array drops rapidly relative to an ideal array. In this regime the sensitivity is independent of n, and hence it may be efficient to have many smaller arrays, each operating separately and simultaneously.
机译:我们研究了n个孔径的地面光学阵列的成像灵敏度,该阵列中的光束像无线电干涉阵列一样成对地组合到n(n-1)/ 2个探测器上,即所谓的^ nC_2干涉仪。地面运行迫使将条纹能量和双谱相量用作主要的可观测值,而不是将更简单,更优的观测值迈克尔逊条纹相量。在高光子速率下,我们发现与直接使用迈克尔逊条纹相量的理想阵列(基于空间)相比,双光谱成像不会损失任何灵敏度。在相反的极限中,当每个相干时间每个空间相干区域的光子数量下降到1以下时,阵列的灵敏度相对于理想阵列会迅速下降。在这种情况下,灵敏度与n无关,因此拥有许多较小的阵列(分别独立且同时运行)可能会很有效。

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