Single-Mode Photonic Band Gap Guidance of Light in Air.
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Summary
The confinement of light within a hollow core (a large air hole) in a silica-air photonic crystal fiber is demonstrated and certain wavelength bands are confined and guided down the fiber.
- Type
- article
- Published
- 1999-09-03
- Cited by
- 1,911
- References
- 9
- OpenAlex
- https://openalex.org/W2039506894
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:21968091
Keywords
Cladding (metalworking), Photonic crystal, Materials science, Photonic-crystal fiber, Optoelectronics
References
- Photonic band gap guidance in optical fibers
- Full 2-D photonic bandgaps in silica/air structures
- Guiding and high-harmonic generation of sub-10-fs pulses in hollow-core fibers at 1015 W/cm2
- Hollow metallic and dielectric waveguides for long distance optical transmission and lasers
- High-peak-power, pulsed CO(2) laser light delivery by hollow glass waveguides.
- All-silica single-mode optical fiber with photonic crystal cladding.
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- Optomechanical crystals
- Highly sensitive optical detection of specific protein in breast cancer cells using microstructured fiber in extremely low sample volume.
- Gas-Filled Hollow Core Fiber Lasers Based on Population Inversion
- Liquid Crystal Materials And Tunable Devices For Optical Communications
- Atomic vapours filled hollow core photonic crystal fibre for magneto-optical spectroscopy
- Development of an all-fibre source of heralded single photons
- Photonic crystal fibres and their applications in the nonlinear regime
- Photonic Crystal Bragg Lasers: Design, Fabrication, and Characterization
- Dynamics of Electromagnetic Systems for Energy Harvesting and Filtering
- Fantasies using optical fibers
- Fiber sensors for molecular detection using Raman and surface enhanced Raman scattering
- Hardware authentication using transmission spectra modified optical fiber.
- Planar fluid-tunable waveguide arrays
- Development of hollow-core photonic bandgap fibres free of surface modes
- Brillouin scattering in photonic crystal fiber : from fundamentals to fiber optic sensors
- Bending losses in large mode area holey fibres
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