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Fourier transform digital holographic adaptive optics imaging system

机译:傅里叶变换数字全息自适应光学成像系统

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摘要

A Fourier transform digital holographic adaptive optics imaging system and its basic principles are proposed. The CCD is put at the exact Fourier transform plane of the pupil of the eye lens. The spherical curvature introduced by the optics except the eye lens itself is eliminated. The CCD is also at image plane of the target. The point-spread function of the system is directly recorded, making it easier to determine the correct guide-star hologram. Also, the light signal will be stronger at the CCD, especially for phase-aberration sensing. Numerical propagation is avoided. The sensor aperture has nothing to do with the resolution and the possibility of using low coherence or incoherent illumination is opened. The system becomes more efficient and flexible. Although it is intended for ophthalmic use, it also shows potential application in microscopy. The robustness and feasibility of this compact system are demonstrated by simulations and experiments using scattering objects.
机译:提出了一种傅里叶变换数字全息自适应光学成像系统及其基本原理。 CCD放置在眼镜瞳孔的精确傅立叶变换平面上。光学器件引入的球面曲率(眼镜本身除外)被消除了。 CCD也在目标的像平面上。系统的点扩展功能被直接记录下来,从而更容易确定正确的引导星全息图。同样,光信号在CCD处将更强,尤其是对于相差检测。避免数值传播。传感器的光圈与分辨率无关,打开了使用低相干或不相干照明的可能性。该系统变得更加高效和灵活。尽管它打算用于眼科,但它也显示了在显微镜下的潜在应用。通过使用散射物体的仿真和实验证明了这种紧凑型系统的鲁棒性和可行性。

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