Radial thresholding to mitigate laser guide star aberrations on centre-of-gravity-based Shack-Hartmann wavefront sensors

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Abstract

Sodium laser guide stars (LGSs) are elongated sources due to the thickness and the finite distance of the sodium layer. The fluctuations of the sodium layer altitude and atom density profile induce errors on centroid measurements of elongated spots, and generate spurious optical aberrations in closed-loop adaptive optics (AO) systems. According to an analytical model and experimental results obtained with the University of Victoria LGS bench demonstrator, one of the main origins of these aberrations, referred to as LGS aberrations, is not the centre-of-gravity (CoG) algorithm itself, but the thresholding applied on the pixels of the image prior to computing the spot centroids. A new thresholding method, termed 'radial thresholding', is presented here, cancelling out most of the LGS aberrations without altering the centroid measurement accuracy. © 2009 RAS.

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Lardière, O., Conan, R., Bradley, C., Jackson, K., & Hampton, P. (2009). Radial thresholding to mitigate laser guide star aberrations on centre-of-gravity-based Shack-Hartmann wavefront sensors. Monthly Notices of the Royal Astronomical Society, 398(3), 1461–1467. https://doi.org/10.1111/j.1365-2966.2009.15199.x

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