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用于传感的具有迭代相位恢复的数字表面等离激元全息术。

Digital plasmonic holography with iterative phase retrieval for sensing.

作者信息

Spies Ryan M, Cole Grace H, Engevik Marit A, Nordberg Britta G, Scharnick Evan A, Vliem Isaac M, Brolo Alexandre G, Lindquist Nathan C

出版信息

Opt Express. 2021 Feb 1;29(3):3026-3037. doi: 10.1364/OE.412844.

Abstract

Propagating surface plasmon waves have been used for many applications including imaging and sensing. However, direct in-plane imaging of micro-objects with surface plasmon waves suffers from the lack of simple, two-dimensional lenses, mirrors, and other optical elements. In this paper, we apply lensless digital holographic techniques and leakage radiation microscopy to achieve in-plane surface imaging with propagating surface plasmon waves. As plasmons propagate in two-dimensions and scatter from various objects, a hologram is formed over the surface. Iterative phase retrieval techniques applied to this hologram remove twin image interference for high-resolution in-plane imaging and enable further applications in real-time plasmonic phase sensing.

摘要

传播表面等离子体波已被用于包括成像和传感在内的许多应用中。然而,利用表面等离子体波对微物体进行直接平面内成像存在缺乏简单的二维透镜、镜子和其他光学元件的问题。在本文中,我们应用无透镜数字全息技术和泄漏辐射显微镜技术,以实现利用传播表面等离子体波进行平面内表面成像。由于等离子体在二维中传播并从各种物体散射,因此在表面上会形成全息图。应用于该全息图的迭代相位恢复技术消除了孪生图像干扰,以实现高分辨率平面内成像,并能够在实时等离子体相位传感中得到进一步应用。

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