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A novel high-resolution and large-range diffractive wavefront sensor

机译:一种新型高分辨率和大型衍射波前传感器

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摘要

Based on the Talbot self-imaging principle, a diffraction-based wavefront sensor, the Z-ViewTM wavefront sensor, has been developed at Ophthonix Inc. According to the Talbot effect, a periodic grating can be self-imaged at certain distances behind the grating, commonly known as Talbot distances, without the aid of any imaging device. The fidelity of the Talbot image to the grating pattern is affected by the wavefront aberration in the illumination beam. Therefore, the wavefront distortion can be retrieved through numerical analysis of the Talbot image. Unlike the well-known Shack-Hartmann wavefront sensor, where a group of pixels on the camera is responsible for only one wavefront data point, each camera pixel in the Z-View wavefront sensor has a corresponding wavefront data. The Z-View wavefront sensor measures the wavefront at 1024 x 1048 data points, and can achieve a dynamic range of wavefront curvature of 20 diopters. The Z-View wavefront sensor has been successfully used for wavefront sensing in ophthalmic aberrometry, adaptive optics, and lensometry at Ophthonix.
机译:基于Talbot自成像原理,基于衍射的波前传感器,Z-ViewTM波前传感器已经在Ophthonix Inc.上开发。根据Talbot效果,可以在光栅后面的某些距离处自成熟,通常被称为塔图塔距离,而不借助任何成像装置。 Talbot图像对光栅图案的保真度受到照明光束中的波前像差的影响。因此,可以通过Talbot图像的数值分析来检索波前畸变。与众所周知的Shack-Hartmann波前传感器不同,其中相机上的一组像素仅对一个波前数据点负责,Z-View波前传感器中的每个相机像素具有相应的波前数据。 Z-View波前传感器在1024 x 1048数据点测量波前,并且可以实现20屈光度的波前曲率的动态范围。 Z-View波前传感器已成功用于眼科变性,自适应光学和透镜在Ophthonix的波前感测。

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