Belov Pavel A, Silveirinha Mario G
Department of Electronic Engineering, Queen Mary University of London, UK.
Phys Rev E Stat Nonlin Soft Matter Phys. 2006 May;73(5 Pt 2):056607. doi: 10.1103/PhysRevE.73.056607. Epub 2006 May 18.
The restrictions on the resolution of transmission devices formed by wire media (arrays of conductive cylinders) recently proposed in Phys. Rev. B 71, 193105 (2005) and experimentally tested in Phys. Rev. B 73, 033108 (2006) are studied in this paper using both analytical and numerical modeling. It is demonstrated that such transmission devices have subwavelength resolution that can in principle be made as fine as required by a specific application by controlling the lattice constant of the wire medium. This confirms that slabs of the wire medium are unique imaging devices at the microwave frequency range, and are capable of transmitting distributions of TM-polarized electric fields with nearly unlimited subwavelength resolution to practically arbitrary distances.
本文利用解析建模和数值建模方法,研究了《物理评论B》第71卷,193105页(2005年)最近提出并在《物理评论B》第73卷,033108页(2006年)经过实验测试的由线介质(导电圆柱阵列)构成的传输装置的分辨率限制。结果表明,这种传输装置具有亚波长分辨率,原则上通过控制线介质的晶格常数,可以使其精细程度达到特定应用所需的水平。这证实了线介质平板在微波频率范围内是独特的成像装置,并且能够将具有几乎无限亚波长分辨率的TM极化电场分布传输到几乎任意距离。