Conversion of short-wavelength electromagnetic radiation in SiO2 opal photonic crystals

被引:0
作者
V. S. Gorelik
L. S. Lepnev
A. O. Litvinova
机构
[1] Russian Academy of Sciences,Lebedev Institute of Physics
来源
Inorganic Materials | 2014年 / 50卷
关键词
Photonic Crystal; Halogen Lamp; Sphere Diameter; Photonic Band Structure; Magnetic Photonic Crystal;
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摘要
Reflection spectra of the (111) growth surface of opal photonic crystals differing in silica sphere diameter have been measured under illumination with narrowband ultraviolet and violet light from a laser and light-emitting diodes and with broadband light from a halogen lamp. We have found narrow strong bands differing in spectral position from the light from the short-wavelength excitation sources. The spectral position of these bands corresponds to that of photonic band gaps and is independent of excitation wavelength. The silica sphere diameter has no effect on the shape of the reflection band, and its position always correlates with that of the band gap of the opal. The present results demonstrate that exposure of a photonic crystal to short-wavelength radiation leads to conversion of the radiation to the spectral range of the band gap. The microscopic mechanism of the conversion process may involve three-photon parametric processes and amplification of the broadband photoluminescence due to structural defects in the silica matrix. Our results open up the possibility of creating new types of optically pumped solid gain media based on opal photonic crystals.
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页码:1003 / 1006
页数:3
相关论文
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  • [1] Gorelik VS(2008)Optics of globular photonic crystals Laser Phys. 18 1479-1500
  • [2] Gorelik VS(2007)Optical properties of opal photonic crystals Kvantovaya Elektron. 37 409-432
  • [3] Gorelik VS(2006)Bound and dark photonic states in globular photonic crystals Acta Phys. Hung. B: Quantum Electron. 26 38-46
  • [4] Asakawa K(2006)Photonic crystal and quantum dot technologies for all-optical switch and logic device New J. Phys. 8 1-26
  • [5] Sugimoto Y(1972)Spontaneous emission in a periodic structure Zh. Eksp. Teor. Fiz. 62 505-513
  • [6] Watanabe Y(1990)Photonic band structure: the face-centered-cubic case J. Opt. Soc. Am. A 7 1792-1800
  • [7] Ozaki N(1883)Sur les equations différenrielles lineaires a coefficients periodiques Ann. Sci. Ecole Normale Super. 12 48-88
  • [8] Mizutani A(1998)Spontaneous emission and nonlinear effects in photonic band-gap materials Pure Appl. Opt. 7 393-407
  • [9] Takata Y(1977)Electromagnetic propagation in periodic stratified media J. Opt. Soc. Am. 67 423-438
  • [10] Kitagawa Y(1990)Photonic band-gaps bite the dust Nature 348 481-3383