Generating Bessel beams by use of localized modes.
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Summary
A novel method for generating both propagating and evanescent Bessel beams is proposed using a pair of distributed Bragg reflectors with a resonant point source on one side of the system and transmission of a resonan point source through a thin film.
- Type
- article
- Published
- 2005-05-01
- Cited by
- 54
- References
- 11
- OpenAlex
- https://openalex.org/W15898560
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:6767317
Keywords
Political science
References
- Principles of Optics
- Exact solutions for nondiffracting beams. I. The scalar theory
- Simultaneous micromanipulation in multiple planes using a self-reconstructing light beam
- Diffraction-free beams.
- Evanescent Bessel beams
- Production and uses of diffractionless beams
- Interfering Bessel beams for optical micromanipulation.
- Experimental measurement of the effect of termination on surface electromagnetic waves in one-dimensional photonic bandgap arrays
- Realization of general nondiffracting beams with computer-generated holograms.
- Low-Energy Electron Diffraction
Cited by
- Theory and Development of Near-field Plates.
- RLSA Bessel beam launchers using Hankel waves
- The phototransduction machinery in the rod outer segment has a strong efficacy gradient
- Donuts make diffractionless electromagnetic waves
- Generation of Propagating Bessel Beams Using Leaky-Wave Modes: Experimental Validation
- Direct imaging of surface plasmon excitation with radially polarized beam
- Generation of controllable nondiffracting beams using multimode optical fibers
- Nondiffracting Bessel plasmons.
- Generation of spatial Bessel beams using holographic metasurface.
- The influences of quadrupole-active transitions for atoms in bessel light modes
- Evanescent Bessel beam generation through filtering highly focused cylindrical vector beams with a defect mode one-dimensional photonic crystal
- Total internal reflection of vector Bessel beams: Imbert–Fedorov shift and intensity transformation
- Features of evanescent Bessel light beams formed in structures containing a dielectric layer
- Multimode interference in optical fibers and its applications of fiber lasers and amplifiers
- Generation of Propagating Bessel Beams Using Leaky-Wave Modes
- Reflection and transmission of normally incident full-vector X waves on planar interfaces.
- Generation of TE- and TH-polarized Bessel beams using one-dimensional photonic crystal
- Planar Near-Field Plates
- Generation of enhanced evanescent Bessel beam using band-edge resonance
- Generation of non-diffractive Bessel beams by inward cylindrical traveling wave aperture distributions.
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