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用于亚波长分辨率成像的室温纳米探测器的太赫兹近场探头。

Near-field terahertz probes with room-temperature nanodetectors for subwavelength resolution imaging.

机构信息

University College London, Electronic and Electrical Engineering, London, WC1E 7JE, UK.

NEST, Istituto Nanoscienze - CNR and Scuola Normale Superiore, Piazza San Silvestro 12, Pisa, 56127, Italy.

出版信息

Sci Rep. 2017 Mar 13;7:44240. doi: 10.1038/srep44240.

Abstract

Near-field imaging with terahertz (THz) waves is emerging as a powerful technique for fundamental research in photonics and across physical and life sciences. Spatial resolution beyond the diffraction limit can be achieved by collecting THz waves from an object through a small aperture placed in the near-field. However, light transmission through a sub-wavelength size aperture is fundamentally limited by the wave nature of light. Here, we conceive a novel architecture that exploits inherently strong evanescent THz field arising within the aperture to mitigate the problem of vanishing transmission. The sub-wavelength aperture is originally coupled to asymmetric electrodes, which activate the thermo-electric THz detection mechanism in a transistor channel made of flakes of black-phosphorus or InAs nanowires. The proposed novel THz near-field probes enable room-temperature sub-wavelength resolution coherent imaging with a 3.4 THz quantum cascade laser, paving the way to compact and versatile THz imaging systems and promising to bridge the gap in spatial resolution from the nanoscale to the diffraction limit.

摘要

太赫兹(THz)波的近场成像是光子学和物理及生命科学领域基础研究的一种强大技术。通过在近场中放置一个小孔收集来自物体的 THz 波,可以实现超越衍射极限的空间分辨率。然而,通过亚波长尺寸的孔径进行光传输受到光的波动性的根本限制。在这里,我们设想了一种新颖的架构,利用孔径内产生的固有强消逝太赫兹场来缓解传输消失的问题。亚波长孔径最初与非对称电极耦合,这些电极在由黑磷或 InAs 纳米线薄片制成的晶体管通道中激活热电子太赫兹检测机制。所提出的新型 THz 近场探头能够实现室温下亚波长分辨率的相干成像,使用的是 3.4 THz 量子级联激光器,为紧凑型多功能 THz 成像系统铺平了道路,并有望弥合从纳米级到衍射极限的空间分辨率差距。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ee57/5347152/3d55de3e061a/srep44240-f1.jpg

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