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Parametric Studies of Adaptive Optics by Self-Interference Incoherent Digital Holography

机译:自干涉非相干数字全息技术对自适应光学的参数研究

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Adaptive optics (AO) in astronomical imaging is a technique to improve the quality of image by compensating aberrations induced by atmospheric turbulence. Digital holographic AO (DHAO) is one attractive option to implement AO scheme because it is capable of directly measuring the phase profile of aberration without complicated calculation or loss of resolution of CCD. Hence, if applicable, DHAO is expected to have advantages over traditional AO systems. Recent development of self-interference incoherent digital holography (SIDH) makes it possible to apply the concept of DHAO for an astronomical application where the illumination is incoherent and cannot be controlled. We have investigated the image characteristics according to various parameters of SIDH AO to derive optimum condition or design of the system. We observe not only well-known super-resolution property of SIDH but also interesting and significant improvement of noise behavior by aberration compensation. Because of many beneficial features, we expect that SIDH AO will be a useful tool for astronomical imaging.
机译:天文成像中的自适应光学(AO)是一种通过补偿由大气湍流引起的像差来提高图像质量的技术。数字全息AO(DHAO)是实现AO方案的一种有吸引力的选择,因为它能够直接测量像差的相位分布,而无需复杂的计算或CCD的分辨率损失。因此,如果适用,DHAO有望比传统AO系统具有优势。自干涉非相干数字全息术(SIDH)的最新发展使得将DHAO的概念应用于照明不相干且无法控制的天文应用成为可能。我们根据SIDH AO的各种参数研究了图像特征,以得出最佳条件或系统设计。我们不仅观察到SIDH的众所周知的超分辨率特性,而且还通过像差补偿观察到了有趣且显着的噪声行为改善。由于具有许多有益的功能,我们希望SIDH AO将成为天文成像的有用工具。

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