Analytic expressions for the electromagnetic mode density in finite, one-dimensional, photonic band-gap structures

Jon M. Bendickson, Jonathan P. Dowling, and Michael Scalora
Phys. Rev. E 53, 4107 – Published 1 April 1996
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Abstract

We derive an exact expression for the electromagnetic mode density, and hence the group velocity, for a finite, N-period, one-dimensional, photonic band-gap structure. We begin by deriving a general formula for the mode density in terms of the complex transmission coefficient of an arbitrary index profile. Then we develop a specific formula that gives the N-period mode density in terms of the complex transmission coefficient of the unit cell. The special cases of mode-density enhancement and suppression at the photonic band edge and also at midgap, respectively, are derived. The specific example of a quarter-wave stack is analyzed, and applications to three-dimensional structures, spontaneous emission control, delay lines, band-edge lasers, and superluminal tunneling times are discussed. © 1996 The American Physical Society.

  • Received 13 September 1995

DOI:https://doi.org/10.1103/PhysRevE.53.4107

©1996 American Physical Society

Authors & Affiliations

Jon M. Bendickson and Jonathan P. Dowling

  • Weapons Sciences Directorate, AMSMI-RD-WS-ST, Research, Development, and Engineering Center, U. S. Army Missile Command, Redstone Arsenal, Alabama 35898-5248

Michael Scalora

  • Department of Electrical Engineering, University of Alabama in Huntsville, Huntsville, Alabama 35899

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Issue

Vol. 53, Iss. 4 — April 1996

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