Mode coupling in periodic surface lattice and metamaterial structures for mm-wave and THz applications

被引:0
作者
A. J. MacLachlan
C. W. Robertson
K. Ronald
A. W. Cross
A. D. R. Phelps
机构
[1] University of Strathclyde,Department of Physics, SUPA
来源
SN Applied Sciences | 2019年 / 1卷
关键词
mm-wave sources; Surface modes; Inductive coupling; Periodic structures; Terahertz; Metamaterials;
D O I
暂无
中图分类号
学科分类号
摘要
Planar periodic surface lattice (PSL) structures based on thin, subwavelength substrates have been studied experimentally and numerically. Coupled eigenmode resonances composed of partial volume and surface modes are observed for PSLs with lattice periodicities of 1.50 mm and 1.62 mm etched onto thin copper-backed, substrates. We show that the copper backing is essential for mode-selection in a multi-moded structure and demonstrate good agreement between the experimental results and coupled dispersion plots calculated using CST Microwave Studio. For the first time, evidence of a coupled eigenmode in a metadielectric PSL is presented. It is shown that metadielectric PSLs can support coupled resonances over a narrow bandwidth and are relevant to the innovation of tunable filters, absorbers and sources. Concepts discussed in this work are valid across the frequency spectrum from optical to THz and mm-wave frequencies and are fundamental to the innovation of novel mm-wave–THz sources as well as highly efficient solar cells, diagnostic instruments and antennae.
引用
收藏
相关论文
共 172 条
  • [1] Lu Z(2005)Three-dimensional subwavelength imaging by a photonic-crystal flat lens using negative refraction at microwave frequencies Phys Rev Lett 95 153901-3107
  • [2] Murakowski JA(2009)Broadband terahertz imaging of documents written with lead pencils Opt Commun 282 3104-17805
  • [3] Schuetz CA(2013)Goya’s artwork imaging with terahertz waves Opt Express 21 17800-1356
  • [4] Shi S(2017)RF behavior of cylindrical cavity based 240 GHz, 1 MW gyrotron for future tokamak system J Infrared Millim Terahertz Waves 38 1342-171
  • [5] Schneider GJ(2011)An octave-bandwidth negligible-loss radiofrequency metamaterial Nat Mater 10 216-402
  • [6] Prather DW(2011)A review on terahertz communications research J Infrared Millim Terahertz Waves 32 143-2936
  • [7] Abraham E(2008)Direct acceleration of electrons in a corrugated plasma waveguide Phys Rev Lett 100 195001-512
  • [8] Younus A(2005)Demonstration of a 17-GHz, high-gradient accelerator with a photonic-band-gap structure Phys Rev Lett 95 074801-1230
  • [9] El Fatimy A(2002)Stimulated Raman scattering in hydrogen-filled hollow-core photonic crystal fiber Science 298 399-376
  • [10] Delagnes JC(2004)Pulsed orotron—a new microwave source for submillimeter pulse high-field electron paramagnetic resonance spectroscopy Rev Sci Instrum 75 2926-156