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介电超表面中受导模共振支配的宽带红外成像。

Broadband infrared imaging governed by guided-mode resonance in dielectric metasurfaces.

作者信息

Zheng Ze, Smirnova Daria, Sanderson Gabriel, Cuifeng Ying, Koutsogeorgis Demosthenes C, Huang Lujun, Liu Zixi, Oulton Rupert, Yousefi Arman, Miroshnichenko Andrey E, Neshev Dragomir N, O'Neill Mary, Rahmani Mohsen, Xu Lei

机构信息

Advanced Optics and Photonics Laboratory, Department of Engineering, School of Science & Technology, Nottingham Trent University, Nottingham, NG11 8NS, UK.

ARC Centre of Excellence for Transformative Meta-Optical Systems (TMOS), Research School of Physics, The Australian National University, Canberra, ACT, 2601, Australia.

出版信息

Light Sci Appl. 2024 Sep 10;13(1):249. doi: 10.1038/s41377-024-01535-w.

Abstract

Nonlinear metasurfaces have experienced rapid growth recently due to their potential in various applications, including infrared imaging and spectroscopy. However, due to the low conversion efficiencies of metasurfaces, several strategies have been adopted to enhance their performances, including employing resonances at signal or nonlinear emission wavelengths. This strategy results in a narrow operational band of the nonlinear metasurfaces, which has bottlenecked many applications, including nonlinear holography, image encoding, and nonlinear metalenses. Here, we overcome this issue by introducing a new nonlinear imaging platform utilizing a pump beam to enhance signal conversion through four-wave mixing (FWM), whereby the metasurface is resonant at the pump wavelength rather than the signal or nonlinear emissions. As a result, we demonstrate broadband nonlinear imaging for arbitrary objects using metasurfaces. A silicon disk-on-slab metasurface is introduced with an excitable guided-mode resonance at the pump wavelength. This enabled direct conversion of a broad IR image ranging from >1000 to 4000 nm into visible. Importantly, adopting FWM substantially reduces the dependence on high-power signal inputs or resonant features at the signal beam of nonlinear imaging by utilizing the quadratic relationship between the pump beam intensity and the signal conversion efficiency. Our results, therefore, unlock the potential for broadband infrared imaging capabilities with metasurfaces, making a promising advancement for next-generation all-optical infrared imaging techniques with chip-scale photonic devices.

摘要

近年来,非线性超表面因其在包括红外成像和光谱学在内的各种应用中的潜力而经历了快速发展。然而,由于超表面的转换效率较低,人们采用了多种策略来提高其性能,包括利用信号或非线性发射波长处的共振。这种策略导致非线性超表面的工作带宽较窄,这限制了许多应用,包括非线性全息术、图像编码和非线性超透镜。在此,我们通过引入一种新的非线性成像平台来克服这一问题,该平台利用泵浦光束通过四波混频(FWM)增强信号转换,从而使超表面在泵浦波长而非信号或非线性发射波长处发生共振。结果,我们展示了使用超表面对任意物体进行宽带非线性成像。引入了一种平板上硅盘超表面,其在泵浦波长处具有可激发的导模共振。这使得范围从>1000到4000nm的宽红外图像能够直接转换为可见光。重要的是,通过利用泵浦光束强度与信号转换效率之间的二次关系,采用四波混频大大降低了非线性成像对高功率信号输入或信号光束处共振特征的依赖。因此,我们的结果开启了利用超表面实现宽带红外成像能力的潜力,为下一代采用芯片级光子器件的全光红外成像技术带来了有前景的进展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b1cf/11387824/e050de6edf1a/41377_2024_1535_Fig1_HTML.jpg

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