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通过确定未知介质的折射率和厚度来校正由其引起的球差。

Correcting spherical aberrations induced by an unknown medium through determination of its refractive index and thickness.

作者信息

Iwaniuk Daniel, Rastogi Pramod, Hack Erwin

机构信息

Laboratory of Electronics / Metrology / Reliability, Empa, Überlandstr. 129, 8600 Dübendorf, Switzerland.

出版信息

Opt Express. 2011 Sep 26;19(20):19407-14. doi: 10.1364/OE.19.019407.

Abstract

In imaging and focusing applications, spherical aberration induces axial broadening of the point spread function (PSF). A transparent medium between lens and object of interest induces spherical aberration. We propose a method that first obtains both the physical thickness and the refractive index of the aberration inducing medium in situ by measuring the induced focal shifts for paraxial and large angle rays. Then, the fourth order angle dependence of the optical path difference inside the medium is used to correct the spherical aberration using a phase-only spatial light modulator. The obtained measurement accuracy of 3% is sufficient for a complete compensation as demonstrated in a model microscope with NA 0.3 with glass plate induced axial broadening of the PSF by a factor of 5.

摘要

在成像和聚焦应用中,球差会导致点扩散函数(PSF)在轴向上展宽。透镜与感兴趣物体之间的透明介质会引起球差。我们提出了一种方法,该方法首先通过测量近轴光线和大角度光线的诱导焦移来原位获取像差诱导介质的物理厚度和折射率。然后,利用介质内部光程差的四阶角度依赖性,通过纯相位空间光调制器来校正球差。如在数值孔径为0.3的模型显微镜中所示,所获得的3%的测量精度足以实现完全补偿,该模型显微镜中玻璃板会使PSF的轴向展宽5倍。

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