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模态无传感器自适应光学中的校正精度。

Accuracy of correction in modal sensorless adaptive optics.

作者信息

Facomprez Aurélie, Beaurepaire Emmanuel, Débarre Delphine

机构信息

Laboratory for Optics and Biosciences, Ecole Polytechnique, CNRS, INSERM, 91128 Palaiseau, France.

出版信息

Opt Express. 2012 Jan 30;20(3):2598-612. doi: 10.1364/OE.20.002598.

Abstract

We investigate theoretically and experimentally the parameters governing the accuracy of correction in modal sensorless adaptive optics for microscopy. On the example of two-photon fluorescence imaging, we show that using a suitable number of measurements, precise correction can be obtained for up to 2 radians rms aberrations without optimising the aberration modes used for correction. We also investigate the number of photons required for accurate correction when signal acquisition is shot-noise limited. We show that only 10(4) to 10(5) photons are required for complete correction so that the correction process can be implemented with limited extra-illumination and associated photoperturbation. Finally, we provide guidelines for implementing an optimal correction algorithm depending on the experimental conditions.

摘要

我们对显微镜模态无传感器自适应光学中控制校正精度的参数进行了理论和实验研究。以双光子荧光成像为例,我们表明,在不优化用于校正的像差模式的情况下,使用适当数量的测量值,对于高达2弧度均方根像差可获得精确校正。我们还研究了信号采集受散粒噪声限制时进行精确校正所需的光子数。我们表明,完全校正仅需要10⁴至10⁵个光子,因此校正过程可以在有限的额外照明和相关光扰动下实现。最后,我们根据实验条件提供了实施最佳校正算法的指导方针。

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