Abstract

In the paper, we analyze the layer-by-layer electromagnetic field distribution in a quasiperiodic dispersive aluminum photonic crystal film. We propose the new way to calculate such structures without the finite-difference time-domain (FDTD) numerical computing agreed with both the experimental spectrum and the FDTD simulation. Also, we found the first pore electromagnetic pumping at the photonic bandgap edge which is useful for the various fundamental and engineering applications.

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