arXiv · 0903.1073
Inverse Borrmann effect in photonic crystals
Abstract
The Borrmann effect, which is related to the microscopic distribution of the electromagnetic field inside the primitive cell, is studied in photonic and magnetophotonic crystals. This effect, well-known in x-ray spectroscopy, is responsible for the enhancement or suppression of various linear and nonlinear optical effects when the incidence angle and/or the frequency change. It is shown that by design of the primitive cell this effect can be suppressed and even inverted.
Explore related subjects
Keep this discovery
A. P. Vinogradov, Yu. E. Lozovik, A. M. Merzlikin, A. V. Dorofeenko, I. Vitebskiy, A. Figotin, A. B. Granovsky, A. A. Lisyansky. 2009-08-29. Inverse Borrmann effect in photonic crystals. https://doi.org/10.1103/physrevb.80.235106
Cite the original work for its findings. Save a collection to share your selection of sources.