Effect of bending on surface plasmon resonance spectrum in microstructured optical fibers.
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Summary
By modifying the holes layout in the microstructured cladding, the fiber is designed, in which the depth of the surface plasmon resonance is in a high degree tunable by bending, and the mechanisms responsible for the change in the SPR spectrum induced by bending are explained.
- Type
- article
- Published
- 2013-09-23
- Cited by
- 16
- References
- 26
- OpenAlex
- https://openalex.org/W24104163
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:2172923
Keywords
Computer science
References
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- Photonic bandgap fiber-based Surface Plasmon Resonance sensors.
- Effect of coupling between fundamental and cladding modes on bending losses in photonic crystal fibers.
- Exploitation of Localized Surface Plasmon Resonance
- Side-hole fiber sensor based on surface plasmon resonance.
- Exact Equivalent Straight Waveguide Model for Bent and Twisted Waveguides
- Surface plasmon resonance sensors: review
- Analysis of curved optical waveguides by conformal transformation
- In-line fiber-optic sensors based on the excitation of surface plasma modes in metal-coated tapered fibers
- Photonic crystal fiber-based plasmonic sensors for the detection of biolayer thickness
- Design criteria for microstructured-optical-fiber-based surface-plasmon-resonance sensors
Cited by
- Plasmonic Fiber Optic Refractometric Sensors: From Conventional Architectures to Recent Design Trends
- Effect of constructional parameters on the performance of a surface plasmon resonance sensor based on a multimode polymer optical fiber.
- Highly Sensitive Side-Polished Birefringent PCF-Based SPR Sensor in near IR
- Surface plasmon resonance effect in helical core fibers
- Magnetron Sputtering Coated Optical Fiber Probe Designs for Surface Plasmon Resonance Sensor
- Recent advances in plasmonic photonic crystal fibers: design, fabrication and applications
- Surface-Plasmon-Resonance-Based Optical Fiber Curvature Sensor with Temperature Compensation by Means of Dual Modulation Method
- A Promising SPR Sensor with Single mode- Multimode-Single mode Fiber Embedding Microcavity
- Twist Induced Mode Confinement in Partially Open Ring of Holes
- Bend-induced long period grating in a helical core fiber.
- In-Fiber Hybrid Cladding Waveguide by Femtosecond Inscription for Two-Dimensional Vector Bend Sensing
- Effect of bending on photonic crystal fiber based surface plasmon resonance biosensor
- Optimization of hexagonal boron-doped silicate photonic crystal fiber to obtain near zero flattened dispersion for nonlinear waves by finite difference method
- Optimization of spatial mode separation in few-mode nanostructured fibers with generative inverse design networks
- Design and Numerical Investigation of Surface Plasmon Resonance–Based Refractive Index Sensor
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