Phys. Rev. E 53, 4107 - 4121 (1996)

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

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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

Received 13 September 1995

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.


©1996 The American Physical Society

URL: http://link.aps.org/abstract/PRE/v53/p4107
DOI: 10.1103/PhysRevE.53.4107
PACS: 41.20.Jb, 42.50.-p, 78.66.Fd, 85.60.Jb

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