具有观察者位移不变性的空间非相干驱动全息图光学重建

IF 20.6 Q1 OPTICS
Yeo Ju Sohn, Daeho Yang
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引用次数: 0

摘要

相干保持波场之间的相位一致性,从而实现全息术中的精确记录和重建。尽管近年来计算光学的发展已经通过计算检索信息实现了非相干光全息数据采集,但光学重建仍然需要部分相干光源。我们展示了利用不相干重建三维分布的全息图。通过将非相干光分解成无穷小的相干光并计算它们的传播,优化非相干和以类似于期望的三维场景,而单个相干光重建完全不同的强度。非相干性提供高图像质量和宽眼箱,在瞳孔位移下重建的强度保持位移不变,允许眼箱扩展1000倍。我们通过概念验证实验确认了平移不变性,并演示了使用神经网络实时合成非相干全息图,大大降低了计算成本。该方法可为非相干光的光子学研究提供新的思路,并可应用于全息显示。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Spatial incoherence-driven optical reconstruction of holograms with observer shift-invariance

Spatial incoherence-driven optical reconstruction of holograms with observer shift-invariance

Coherence preserves phase consistency between wavefields, enabling accurate recording and reconstruction in holography. Although recent advances in computational optics have realized holographic data acquisition using incoherent light by computationally retrieving information, optical reconstruction still requires partially coherent light sources. We demonstrate a hologram that reconstructs 3-dimensional distribution utilizing incoherence. By decomposing incoherent light into infinitesimal coherent lights and calculating their propagations, the incoherent sum is optimized to resemble the desired 3-dimensional scene, whereas individual coherent lights reconstruct completely different intensities. Incoherence provides high image quality and a wide eyebox, with the reconstructed intensity remaining shift-invariant under pupil displacement, allowing a 1000-fold expansion of the eyebox. We confirm the shift-invariance through a proof-of-concept experiment and demonstrate real-time synthesis of incoherent holograms using a neural network, significantly reducing computational costs. Our method could inspire new approaches in photonics using incoherent light and be practically adopted in holographic displays.

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来源期刊
Light-Science & Applications
Light-Science & Applications 数理科学, 物理学I, 光学, 凝聚态物性 II :电子结构、电学、磁学和光学性质, 无机非金属材料, 无机非金属类光电信息与功能材料, 工程与材料, 信息科学, 光学和光电子学, 光学和光电子材料, 非线性光学与量子光学
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803
审稿时长
2.1 months
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