Title :
Properties of left-handed metamaterials: transmission, backward phase, negative refraction, and focusing
Author :
Grzegorczyk, Tomasz M. ; Moss, Christopher D. ; Lu, Jie ; Chen, Xudong ; Pacheco, Joe ; Au Kong, Jin
Author_Institution :
Center for Electromagn. Res. & Applic., Massachusetts Inst. of Technol., Cambridge, MA, USA
Abstract :
Four properties related to left-handed metamaterials are studied numerically: transmission within a stop-band, backward phase, negative refraction, and partial focusing. The unit cell of the metamaterial under study is composed of a rod and a ring originally proposed at infrared frequencies and redesigned here at microwave frequencies. We show that this ring, because of its symmetry, exhibits a better transmission in a parallel-plate waveguide than the original concentric split-ring resonator. Negative refraction is studied from a prism-shaped metamaterial, while all of the other properties are studied from a slab-shaped metamaterial. In particular, transmission and backward phase are studied on a slab where rings naturally couple with the incident wave, while partial focusing is studied on a slab of rings perpendicular to the direction of propagation. The numerical simulations are based on a two-dimensional periodic method of moments, whose Green´s function is computed via Ewald´s method, and a three-dimensional finite-difference time-domain technique.
Keywords :
Green´s function methods; electromagnetic wave refraction; finite difference time-domain analysis; materials properties; metamaterials; microwave materials; Green function; backward phase; finite difference time domain; incident wave; infrared frequency; left handed metamaterials property; negative refraction; parallel plate waveguide; partial focusing; phase measurement; prism measurement; transmission property; Couplings; Finite difference methods; Geometry; Magnetic materials; Metamaterials; Microwave frequencies; Moment methods; Phase measurement; Slabs; Time domain analysis; Focusing; left-handed (LH) metamaterial; method of moments (MoM); negative index of refraction; phase measurements; prism measurements;
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
DOI :
10.1109/TMTT.2005.854261