Optics Letters, volume 50, issue 5, pages 1528
Optical Pendellösung effect in 2D hexagonal photonic crystals based on porous anodic alumina
V. B. Novikov
1
,
K A Smirnov
1
,
Andrey A. Dotsenko
1
,
I V Roslyakov
1
,
E. O. Sotnichuk
1
,
A. I. Maydykovskiy
1
,
T V Murzina
1
Publication type: Journal Article
Publication date: 2025-02-20
Journal:
Optics Letters
scimago Q1
SJR: 1.040
CiteScore: 6.6
Impact factor: 3.1
ISSN: 01469592, 15394794
Abstract
Intermodal light interference in artificial optical structures has become a powerful tool for precise routing of radiation. In periodic systems, it can lead to the Pendellösung effect consisting of the energy exchange between diffraction orders. Originally discovered for x rays, the optical analog of this phenomenon promises to be a viable means for the control of light. In this work, we investigate the Pendellösung effect in the visible spectral range in two-dimensional photonic crystals (PhCs) with a hexagonal lattice of pores in anodic alumina. We found peculiar spectral and angular variations of the light transmission near the Bragg diffraction conditions and provide a detailed analysis of the effect.
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