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量子增强非干涉定量相位成像。

Quantum enhanced non-interferometric quantitative phase imaging.

作者信息

Ortolano Giuseppe, Paniate Alberto, Boucher Pauline, Napoli Carmine, Soman Sarika, Pereira Silvania F, Ruo-Berchera Ivano, Genovese Marco

机构信息

Quantum Metrology and Nano Technology Division, INRiM, Strada delle Cacce 91, 10135, Torino, Italy.

DISAT, Politecnico di Torino, Corso Duca degli Abruzzi 24, 10129, Torino, Italy.

出版信息

Light Sci Appl. 2023 Jul 11;12(1):171. doi: 10.1038/s41377-023-01215-1.

Abstract

Quantum entanglement and squeezing have significantly improved phase estimation and imaging in interferometric settings beyond the classical limits. However, for a wide class of non-interferometric phase imaging/retrieval methods vastly used in the classical domain, e.g., ptychography and diffractive imaging, a demonstration of quantum advantage is still missing. Here, we fill this gap by exploiting entanglement to enhance imaging of a pure phase object in a non-interferometric setting, only measuring the phase effect on the free-propagating field. This method, based on the so-called "transport of intensity equation", is quantitative since it provides the absolute value of the phase without prior knowledge of the object and operates in wide-field mode, so it does not need time-consuming raster scanning. Moreover, it does not require spatial and temporal coherence of the incident light. Besides a general improvement of the image quality at a fixed number of photons irradiated through the object, resulting in better discrimination of small details, we demonstrate a clear reduction of the uncertainty in the quantitative phase estimation. Although we provide an experimental demonstration of a specific scheme in the visible spectrum, this research also paves the way for applications at different wavelengths, e.g., X-ray imaging, where reducing the photon dose is of utmost importance.

摘要

量子纠缠与压缩已显著提升了干涉测量环境下的相位估计和成像,超越了经典极限。然而,对于经典领域中广泛使用的一大类非干涉相位成像/重建方法,例如叠层成像术和衍射成像,量子优势的证明仍然缺失。在此,我们通过利用纠缠来增强非干涉环境下纯相位物体的成像,仅测量相位对自由传播场的影响,填补了这一空白。这种基于所谓“强度传输方程”的方法是定量的,因为它无需物体的先验知识就能提供相位的绝对值,并且以宽场模式运行,所以无需耗时的光栅扫描。此外,它不需要入射光的空间和时间相干性。除了在固定数量的光子透过物体照射时总体提高图像质量,从而更好地分辨小细节外,我们还证明了定量相位估计中不确定性的明显降低。尽管我们提供了可见光谱中特定方案的实验演示,但这项研究也为不同波长的应用,例如X射线成像,铺平了道路,在X射线成像中降低光子剂量至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ec50/10336087/437248301eb4/41377_2023_1215_Fig1_HTML.jpg

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