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Simultaneous correction of large low order and high order aberrations with a new deformable mirror technology

机译:利用新的可变形反射镜技术同时校正大低阶和高阶像差

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A new technology of deformable mirror will be presented. Based on magnetic actuators, these deformable mirrors feature record strokes (more than +/- 45 urn of astigmatism and focus correction) with an optimized temporal behavior. Furthermore, the development has been made in order to have a large density of actuators within a small clear aperture (typically 52 actuators within a diameter of 9.0mm). We will present the key benefits of this technology for vision science: simultaneous correction of low and high order aberrations, AO-SLO image without artifacts due to the membrane vibration, optimized control, etc.Using recent papers published by Doble, Thibos and Miller, we show the performances that can be achieved by various configurations using statistical approach. The typical distribution of wavefront aberrations (both the low order aberration (LOA) and high order aberration (HOA)) have been computed and the correction applied by the mirror. We compare two configurations of deformable mirrors (52 and 97 actuators) and highlight the influence of the number of actuators on the fitting error, the photon noise error and the effective bandwidth of correction.
机译:将介绍一种可变形镜的新技术。这些可变形反射镜基于磁致动器,具有记录行程(超过+/- 45 um的像散和聚焦校正),并具有最佳的时间行为。此外,已经进行了开发以便在小的通孔内具有大密度的致动器(通常在9.0mm的直径内有52个致动器)。我们将展示该技术在视觉科学领域的关键优势:同时校正低阶和高阶像差,由于膜片振动而没有伪影的AO-SLO图像,优化的控制等。 使用Doble,Thibos和Miller发表的最新论文,我们展示了使用统计方法通过各种配置可以实现的性能。已经计算了波前像差(低阶像差(LOA)和高阶像差(HOA))的典型分布,并通过反射镜进行了校正。我们比较了可变形反射镜(52个和97个执行器)的两种配置,并强调了执行器数量对装配误差,光子噪声误差和校正有效带宽的影响。

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