Search results for "fiber"

showing 10 items of 2343 documents

Novel in-line fiber-optic filters and polarisers

2005

Novel in-line devices, based on a tapered fiber whose uniform waist has been metal-coated, are reported. The resonant excitation of a surface plasma mode of the metal film allows for the design of wavelength filters and polarisers

Optical fiberMaterials sciencebusiness.industryPhysics::OpticsPolarization-maintaining optical fiberPolarizerGraded-index fiberlaw.inventionOpticslawFiber optic sensorOptoelectronicsDispersion-shifted fiberPhysics::Accelerator PhysicsbusinessPlastic optical fiberPhotonic-crystal fiber
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Photonic-crystal fiber-based pressure sensor for dual environment monitoring.

2014

In this paper the development of a side-hole photonic-crystal fiber (SH-PCF) pressure sensor for dual environment monitoring is reported. SH-PCF properties (phase and group birefringence, sensitivity to pressure variations) are measured and compared to simulated data. In order to probe two environments, two sections of the SH-PCF with different lengths are spliced and set in a Solc filter-like configuration. This setup allows obtaining the individual responses of the first and second fiber independently, which is useful for a space-multiplexed measurement. As the employed fiber is sensitive to pressure variations, we report the use of this configuration for dual environment pressure sensing.

Optical fiberMaterials sciencebusiness.industryPhysics::OpticsPolarization-maintaining optical fiberPressure sensorGraded-index fiberAtomic and Molecular Physics and Opticslaw.inventionOpticslawFiber optic sensorDispersion-shifted fiberElectrical and Electronic EngineeringbusinessPlastic optical fiberEngineering (miscellaneous)Photonic-crystal fiberApplied optics
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All-Normal Dispersion Photonic-Crystal Fiber for Pulse-Preserving Supercontinuum Generation near 800 nm

2013

All-normal dispersion photonic-crystal fiber is designed for pulse-preserving supercontinuum generation near 800 nm. Supercontinuum generation is analyzed numerically addressing the role of pump pulse energy and offset of the pump wavelength from the zero point of 3d-order dispersion.

Optical fiberMaterials sciencebusiness.industryPhysics::OpticsZero-point energylaw.inventionSupercontinuumPulse propagationWavelengthZero-dispersion wavelengthlawOptoelectronicsPulse energybusinessPhotonic-crystal fiberFrontiers in Optics 2013
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Improving mid-infrared supercontinuum generation efficiency by pumping a fluoride fiber directly into the anomalous regime at 1995 nm

2011

Supercontinuum sources in the mid-infrared may found many potential applications to spectroscopy and material caracterization. Supercontinuum light extending up to 4000 nm has been efficiently generated in fluorozirconate glasses (ZBLAN) with 10.5 W power using an amplified nanosecond pulsed laser diode at 1550 nm [1]. As the dispersion wavelength of the fiber is closed to 1700 nm, pumping at 1550 nm does not directly allow generation of solitons. A first approach is thus to pump a piece of SMF fiber in the anomalous dispersion regime to generate the solitons and shift them to the anomalous dispersion regime of the ZBLAN fiber [1,2]. Another approach is to use a high power femtosecond laser…

Optical fiberMaterials sciencebusiness.industryPhysics::Opticslaw.inventionSupercontinuumOptical pumpingchemistry.chemical_compoundZero-dispersion wavelengthOpticschemistrylawZBLANDispersion (optics)Dispersion-shifted fiberbusinessSelf-phase modulation2011 Conference on Lasers and Electro-Optics Europe and 12th European Quantum Electronics Conference (CLEO EUROPE/EQEC)
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<title>Optical pressure sensor based on the side-emitting optical fiber</title>

2003

Two prototype models of pressure sensors using side-scattering optic fiber as the sensitive element have been designed and experimentally assessed. The study showed that the use of 600-micron silica core side-scattering fiber resulted in 5 to 6 times higher sensitivity compared to the oridinary PCS fibers.

Optical fiberMaterials sciencebusiness.industryPlastic-clad silica fiberPolarization-maintaining optical fiberGraded-index fiberlaw.inventionOpticslawFiber optic sensorbusinessPlastic optical fiberHard-clad silica optical fiberPhotonic-crystal fiberSPIE Proceedings
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Development of optical WGM resonators for biosensors

2017

Whispering Gallery Mode (WGM) resonators are very sensitive to nanoparticles attaching to the surface. We simulate this process using COMSOL Wave Optics module. Our spherical WGM resonators are produced by melting a tip of an optical fiber and we measure optical Q factors in the 105 range. Molecular oxygen lines of the air in the 760 nm region are used as reference markers when looking for the shifts of the WGM resonance lines. We demonstrate WGM microresonator surface coating with a layer of ZnO nanorods as well as with polystyrene microspheres. Coatings produce increased contact surface. Additional layer of antigens/antibodies will be coated to make high-specificity biosensors.

Optical fiberMaterials sciencebusiness.industryResonancePhysical opticslaw.inventionResonatorSurface coatinglawOptoelectronicsNanorodWhispering-gallery wavebusinessBiosensorBiophotonics—Riga 2017
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<title>Pressure sensitivity of the side-glowing optical fibers</title>

2001

Remarkable impact of external mechanical pressure to the transmitted radiation intensity has been observed for glowing fibers with various silica core diameters and side- scattering efficiencies. A physical model on deformation- simulated light scattering has been developed and discussed. The results of experimental studies confirmed the basic model assumptions.© (2001) COPYRIGHT SPIE--The International Society for Optical Engineering. Downloading of the abstract is permitted for personal use only.

Optical fiberMaterials sciencebusiness.industryScatteringOptical engineeringDeformation (meteorology)Light scatteringlaw.inventionCore (optical fiber)OpticslawOptoelectronicsbusinessHard-clad silica optical fiberRadiant intensitySPIE Proceedings
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Time-resolved acousto-optic interaction in single-mode optical fibers: characterization of axial nonuniformities at the nanometer scale.

2014

We report on a time-resolved acousto-optic interaction technique for the detection of axial nonuniformities in single-mode fibers. It is based on the propagation of short packets of flexural acoustic waves. Small axial nonuniformities (of the order of nanometers) are detected by measuring the transmittance of the fundamental mode as a function of time. It is shown that the technique allows the detection of axial nonuniformities along sections of single-mode fiber exceeding 1 m long with spatial resolution of the order of a few centimeters.

Optical fiberMaterials sciencebusiness.industrySingle-mode optical fiberPhysics::OpticsAcoustic waveAtomic and Molecular Physics and Opticslaw.inventionOpticsFiber Bragg gratinglawAttenuation coefficientTransmittanceFiberbusinessImage resolutionOptics letters
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Experiments with a fiber-based optical dipole trap for cold Cs-Atoms

2011

Pulling a standard optical fiber to a diameter of less than the wavelength of the guided light causes the light field to project slightly over the fiber boundaries in form of an evanescent wave. The latter can be used for light-matter-interactions in the vicinity of the surface of the fiber and therefore allows to perform quantum optic experiments.

Optical fiberMaterials sciencebusiness.industrySingle-mode optical fiberPhysics::OpticsPolarization-maintaining optical fiberGraded-index fiberlaw.inventionMode field diameterOpticslawFiber optic sensorDispersion-shifted fiberbusinessPhotonic-crystal fiber2011 Conference on Lasers and Electro-Optics Europe and 12th European Quantum Electronics Conference (CLEO EUROPE/EQEC)
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Supercontinuum Q-switched Yb fiber laser using an intracavity microstructured fiber

2009

We report on an intracavity configuration for supercontinuum generation in a Q-switched Yb fiber laser. The supercontinuum laser includes a section of microstructured fiber within the Q-switched laser cavity. With 380 mW of pump power, the supercontinuum laser can emit broadband pulses of 6 microJ energy and 10 ns temporal width, at repetition rates from few hertz up to 2 kHz. The supercontinuum spectrum spans over a wavelength range in excess of 1.4 microm.

Optical fiberMaterials sciencebusiness.industryWavelength rangeQ-switchingAtomic and Molecular Physics and Opticslaw.inventionSupercontinuumOpticslawOptical cavityFiber laserBroadbandFiberbusiness
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