Enhancing Interferometry Using Weak Value Amplification with Real Weak Values.

IF 9 1区 物理与天体物理 Q1 PHYSICS, MULTIDISCIPLINARY Physical review letters Pub Date : 2025-02-28 DOI:10.1103/PhysRevLett.134.080802
Jing-Hui Huang, Kyle M Jordan, Adetunmise C Dada, Xiang-Yun Hu, Jeff S Lundeen
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Abstract

We introduce an ultrasensitive interferometric protocol that combines weak value amplification (WVA) with traditional interferometry. This protocol WVA+interferometry uses weak value amplification of the relative delay between two paths to enhance interferometric sensitivity. As an example, we demonstrate a proof-of-principle experiment that achieves few-attosecond timing resolution (few nanometer path length resolution) with a double-slit interferometer using only common optical components. Since our example uses only the spatial shift of double-slit interference fringes, its precision is not limited by the timing resolution of the detectors but is instead limited by the fundamental shot noise associated with classical light and the diminished technical noise. We experimentally demonstrate that the signal-to-noise ratio can be improved by one to two orders of magnitude relative to a measurement that does not use WVA. Two key conclusions are drawn: (i) Most conventional interferometric techniques primarily rely on determining the path difference (time delay or longitudinal phase), with their precision constrained by technical noise. Our protocol offers a robust solution for minimizing the technical noise in traditional interferometry, with precision in principle approaching the shot-noise limit. (ii) Although WVA has achieved significant advancements in ultrasensitive longitudinal phase measurement, its applicability is constrained by the need for broad spectral bandwidths and high-resolution spectrometers. Contrary to previous assumptions, we demonstrate that quantum-limited WVA time delay measurements are achievable with narrow band light using real weak values. Thus, the cost-effectiveness and practicality of the proposed WVA+interferometry protocol using narrow band light broaden the scope of WVA applications. This protocol holds potential for broad applications in optical metrology, quantum optics and quantum information, biomedical imaging, and interferometric telescopes for astrophysics.

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用实弱值放大增强干涉测量。
介绍了一种将弱值放大技术与传统干涉技术相结合的超灵敏干涉测量方案。该协议WVA+干涉测量使用弱值放大的相对延迟之间的两个路径,以提高干涉灵敏度。作为一个例子,我们展示了一个原理验证实验,该实验仅使用普通光学元件,使用双缝干涉仪实现了几阿秒的定时分辨率(几纳米路径长度分辨率)。由于我们的例子仅使用双缝干涉条纹的空间位移,其精度不受探测器的时间分辨率的限制,而是受到与经典光相关的基本散粒噪声和减小的技术噪声的限制。我们通过实验证明,相对于不使用WVA的测量,信噪比可以提高一到两个数量级。得出了两个关键结论:(i)大多数传统干涉技术主要依赖于确定路径差(时间延迟或纵向相位),其精度受到技术噪声的限制。我们的协议为最小化传统干涉测量中的技术噪声提供了一个强大的解决方案,其精度原则上接近单噪声极限。虽然WVA在超灵敏纵向相位测量方面取得了重大进展,但由于需要宽频带和高分辨率光谱仪,其适用性受到限制。与先前的假设相反,我们证明了使用真实弱值的窄带光可以实现量子限制的WVA时间延迟测量。因此,采用窄带光的WVA+干涉测量方案的成本效益和实用性拓宽了WVA的应用范围。该协议在光学计量学、量子光学和量子信息、生物医学成像和天体物理学干涉测量望远镜等领域具有广泛的应用潜力。
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来源期刊
Physical review letters
Physical review letters 物理-物理:综合
CiteScore
16.50
自引率
7.00%
发文量
2673
审稿时长
2.2 months
期刊介绍: Physical review letters(PRL)covers the full range of applied, fundamental, and interdisciplinary physics research topics: General physics, including statistical and quantum mechanics and quantum information Gravitation, astrophysics, and cosmology Elementary particles and fields Nuclear physics Atomic, molecular, and optical physics Nonlinear dynamics, fluid dynamics, and classical optics Plasma and beam physics Condensed matter and materials physics Polymers, soft matter, biological, climate and interdisciplinary physics, including networks
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