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Experimental and theoretical results for a two-dimensional metal photonic band-gap cavity

Publication ,  Journal Article
Smith, DR; Schultz, S; Kroll, N; Sigalas, M; Ho, KM; Soukoulis, CM
Published in: Applied Physics Letters
December 1, 1994

We demonstrate, by both microwave experiments and numerical simulation, that a two-dimensional lattice of metal cylinders can form a complete photonic band-gap (PBG) structure. The band structure exhibits a single broad PBG extending from zero frequency to a threshold frequency, above which all modes may propagate in some direction. A single cylinder removed from the lattice produces a defect mode localized about the defect site, with an energy density attenuation rate of 30 dB per lattice constant. The frequency dependence of the transmission through a finite thickness of this structure is also calculated in good agreement with the measurements. We suggest that the defect mode resonant cavity when formed by appropriate low loss metals may be advantageous for use in PBG high energy accelerator structures that we are evaluating.

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Published In

Applied Physics Letters

DOI

ISSN

0003-6951

Publication Date

December 1, 1994

Volume

65

Issue

5

Start / End Page

645 / 647

Related Subject Headings

  • Applied Physics
  • 51 Physical sciences
  • 40 Engineering
  • 10 Technology
  • 09 Engineering
  • 02 Physical Sciences
 

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Smith, D. R., Schultz, S., Kroll, N., Sigalas, M., Ho, K. M., & Soukoulis, C. M. (1994). Experimental and theoretical results for a two-dimensional metal photonic band-gap cavity. Applied Physics Letters, 65(5), 645–647. https://doi.org/10.1063/1.112258
Smith, D. R., S. Schultz, N. Kroll, M. Sigalas, K. M. Ho, and C. M. Soukoulis. “Experimental and theoretical results for a two-dimensional metal photonic band-gap cavity.” Applied Physics Letters 65, no. 5 (December 1, 1994): 645–47. https://doi.org/10.1063/1.112258.
Smith DR, Schultz S, Kroll N, Sigalas M, Ho KM, Soukoulis CM. Experimental and theoretical results for a two-dimensional metal photonic band-gap cavity. Applied Physics Letters. 1994 Dec 1;65(5):645–7.
Smith, D. R., et al. “Experimental and theoretical results for a two-dimensional metal photonic band-gap cavity.” Applied Physics Letters, vol. 65, no. 5, Dec. 1994, pp. 645–47. Scopus, doi:10.1063/1.112258.
Smith DR, Schultz S, Kroll N, Sigalas M, Ho KM, Soukoulis CM. Experimental and theoretical results for a two-dimensional metal photonic band-gap cavity. Applied Physics Letters. 1994 Dec 1;65(5):645–647.

Published In

Applied Physics Letters

DOI

ISSN

0003-6951

Publication Date

December 1, 1994

Volume

65

Issue

5

Start / End Page

645 / 647

Related Subject Headings

  • Applied Physics
  • 51 Physical sciences
  • 40 Engineering
  • 10 Technology
  • 09 Engineering
  • 02 Physical Sciences