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Artificial dielectric stepped-refractive-index lens for the terahertz region.

作者信息

Hernandez-Serrano A I, Mendis Rajind, Reichel Kimberly S, Zhang Wei, Castro-Camus E, Mittleman Daniel M

出版信息

Opt Express. 2018 Feb 5;26(3):3702-3708. doi: 10.1364/OE.26.003702.

DOI:10.1364/OE.26.003702
PMID:29401897
Abstract

In this paper we theoretically and experimentally demonstrate a stepped-refractive-index convergent lens made of a parallel stack of metallic plates for terahertz frequencies based on artificial dielectrics. The lens consist of a non-uniformly spaced stack of metallic plates, forming a mirror-symmetric array of parallel-plate waveguides (PPWGs). The operation of the device is based on the TE mode of the PPWG. The effective refractive index of the TE mode is a function of the frequency of operation and the spacing between the plates of the PPWG. By varying the spacing between the plates, we can modify the local refractive index of the structure in every individual PPWG that constitutes the lens producing a stepped refractive index profile across the multi stack structure. The theoretical and experimental results show that this structure is capable of focusing a 1 cm diameter beam to a line focus of less than 4 mm for the design frequency of 0.18 THz. This structure shows that this artificial-dielectric concept is an important technology for the fabrication of next generation terahertz devices.

摘要

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