Ar. Mcgurn et Aa. Maradudin, PHOTONIC BAND STRUCTURES OF 2-DIMENSIONAL AND 3-DIMENSIONAL PERIODIC METAL OR SEMICONDUCTOR ARRAYS, Physical review. B, Condensed matter, 48(23), 1993, pp. 17576-17579
The photonic band structures of a square lattice array of metal or sem
iconductor cylinders, and of an fcc array of metal or semiconductor sp
heres, are computed numerically. The frequency-dependent dielectric fu
nction of the metal or semiconductor is assumed to have the free-elect
ron form epsilon(omega) = 1 - (omega(p)2/omega2), where omega(p) is th
e plasma frequency of the charge carriers. A plane-wave expansion is u
sed to transform the vector electromagnetic wave equation into a matri
x equation. The frequencies of the electromagnetic modes are found as
the zeros of the determinant of the matrix. In general, the plane-wave
method is found to be most effective for structures with filling frac
tions f less-than-or-equal-to 0.1% but provides a semiquantitative des
cription of the band structures of these systems for f > 0.1% .