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Image fidelity improvement in digital holographic microscopy using optical phase conjugation

机译:使用光学相位共轭的数字全息显微镜中的图像保真度改进

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摘要

With respect to digital holography, techniques in suppressing noises derived from reference arm are maturely developed. However, techniques for the object counterpart are not being well developed. Optical phase conjugation technique was believed to be a promising method for this interest. A 0°-cut BaTiO3 photorefractive crystal was involved in self-pumped phase conjugation scheme, and was employed to in-line digital holographic microscopy, in both transmission-type and reflection-type configuration. On pure physical compensation basis, results revealed that the image fidelity was improved substantially with 2.9096 times decrease in noise level and 3.5486 times increase in the ability to discriminate noise on average, by suppressing the scattering noise prior to recording stage.
机译:关于数字全息术,抑制来自参考臂的噪声的技术已经成熟地发展。但是,对象对应物的技术尚不完善。光学相位共轭技术被认为是对此感兴趣的有前途的方法。 0切BaTiO3光折变晶体参与自泵浦相共轭方案,并以透射型和反射型两种形式用于在线数字全息显微镜。在纯物理补偿的基础上,结果表明,通过抑制记录阶段之前的散射噪声,图像保真度得到了显着改善,噪声水平降低了2.9096倍,分辨噪声的能力平均提高了3.5486倍。

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