可见光双曲超表面的深亚波长聚焦和无反射负折射

IF 7.2 2区 材料科学 Q1 MATERIALS SCIENCE, MULTIDISCIPLINARY Advanced Optical Materials Pub Date : 2025-01-25 DOI:10.1002/adom.202402591
Kobi-Yaakov Cohen, Shimon Dolev, Guy Bartal
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引用次数: 0

摘要

双曲超表面(hms)是人工设计的界面,具有高度的各向异性,表现为双曲色散。它们支持具有负衍射和折射的极大动量的能力使它们成为芯片上超分辨率和增强光-物质相互作用的有前途的平台。虽然实验证明了这些结构的双曲性质,但只有有限数量的研究集中在它们的超分辨率能力上,而这些能力从未在可见频率上获得,以充分利用它们巨大的分辨率潜力。在这里,一个近场研究的可见频率hms提出,利用其超分辨率的能力,以最大限度地发挥其潜力。测量了通过hms传播的波的脉冲响应,并在抛物型和双曲型介质的界面上显示出与入射角无关的深亚波长异常聚焦和片上无反射负折射。该方法利用hms的能力,为二维空间的亚波长成像和波压缩设备的进步奠定了基础。
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Deep-Subwavelength Focusing and Reflectionless Negative Refraction in Visible-Light Hyperbolic Metasurface

Hyperbolic metasurfaces (HMSs) are artificially-engineered interfaces, exhibiting high anisotropy manifested as hyperbolic dispersion. Their ability to support extremely large momenta with negative diffraction and refraction places them as promising platforms for on-chip super-resolution and enhanced light-matter interaction. While the hyperbolic nature of these structures is experimentally demonstrated, only a limited number of studies have concentrated on their super-resolution capabilities, which are never obtained at visible-frequency for fully harnessing their immense resolution potential. Here, a near-field investigation of visible-frequency HMSs is presented, exploiting their super-resolution capabilities to their maximum potential. The impulse response of waves propagating across HMSs is measured and demonstrates deep sub-wavelength anomalous focusing and on-chip reflectionless negative refraction at the interface of parabolic and hyperbolic media, independent of incident angle. The approach lays the foundation for sub-wavelength imaging in 2D space for the advancement of imaging and wave compression devices, leveraging the capabilities of HMSs.

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来源期刊
Advanced Optical Materials
Advanced Optical Materials MATERIALS SCIENCE, MULTIDISCIPLINARY-OPTICS
CiteScore
13.70
自引率
6.70%
发文量
883
审稿时长
1.5 months
期刊介绍: Advanced Optical Materials, part of the esteemed Advanced portfolio, is a unique materials science journal concentrating on all facets of light-matter interactions. For over a decade, it has been the preferred optical materials journal for significant discoveries in photonics, plasmonics, metamaterials, and more. The Advanced portfolio from Wiley is a collection of globally respected, high-impact journals that disseminate the best science from established and emerging researchers, aiding them in fulfilling their mission and amplifying the reach of their scientific discoveries.
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