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Experimental investigation of photonic band gap in one-dimensional photonic crystals with metamaterials
Authors:Yihang Chen  Xinggang Wang  Zehui Yong  Yunjuan Zhang  Zefeng Chen  Lianxing He  P.F. Lee  Helen L.W. Chan  Chi Wah Leung  Yu Wang
Affiliation:1. Department of Applied Physics, The Hong Kong Polytechnic University, Kowloon, Hong Kong, China;2. Laboratory of Quantum Information Technology, School of Physics and Telecommunication Engineering, South China Normal University, Guangzhou, China
Abstract:Composite right/left-handed transmission lines with lumped element series capacitors and shunt inductors are used to experimentally realize the one-dimensional photonic crystals composed of single-negative metamaterials. The simulated and experimental results show that a special photonic band gap corresponding to zero-effective-phase (zero-φeffφeff) may appear in the microwave regime. In contrast to the Bragg gap, by changing the length ratio of the two component materials, the width and depth of the zero-φeffφeff gap can be conveniently adjusted while keeping the center frequency constant. Furthermore, the zero-φeffφeff gap vanishes when both the phase-matching and impedance-matching conditions are satisfied simultaneously. These transmission line structures provide a good way for realizing microwave devices based on the zero-φeffφeff gap.
Keywords:Electromagnetic optics   Photonic crystal   Metamaterials
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