Search results for "Laser power scaling"

showing 10 items of 64 documents

Through-transmission laser welding of polymers – temperature field modeling and infrared investigation

2007

The purpose of the present study is to estimate the weldability of a polymeric material couple according to their thermal and optical properties. A first model based on Mie theory and Monte Carlo method describes the laser beam behavior in semi-transparent media and makes it possible to approximate the laser power distribution at the interface of the two materials. A second model based on finite element method permits the temperature field estimation into both parts to be welded. The results are validated by infrared thermography.

0209 industrial biotechnologyMaterials sciencebusiness.industryMie scatteringMonte Carlo methodWeldabilityLaser beam welding02 engineering and technologyWelding021001 nanoscience & nanotechnologyCondensed Matter PhysicsAtomic and Molecular Physics and OpticsFinite element methodElectronic Optical and Magnetic Materialslaw.invention020901 industrial engineering & automationOpticslawThermographyLaser power scaling0210 nano-technologybusinessInfrared Physics & Technology
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Temporal Control of Pulses from a High-Repetition-Rate Tunable Ti:Sapphire Laser by Active Q-switching

2003

We investigated the lasing characteristics of a Ti:sapphire laser pumped by a pulsed high-repetition-rate Nd:YAG laser. The pump laser has a pulsewidth of 450 ns, while the Ti:sapphire laser shows a significantly shorter pulse width of 25 ns for suitably intense pumping. The energy conversion efficiency of the laser is more than 10%. To synchronize different lasers and to avoid multiple spiking during one pump pulse, we use a Brewster-cut Pockels cell in the resonator for Q-switching. The temporal profile and conversion efficiency are determined and compared to theoretical estimates.

Active laser mediumMaterials sciencePhysics and Astronomy (miscellaneous)business.industryFar-infrared laserGeneral EngineeringTi:sapphire laserGeneral Physics and AstronomyLaser pumpingInjection seederLaserQ-switchinglaw.inventionOpticslawLaser power scalingbusinessJapanese Journal of Applied Physics
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Study of the use of methanol-filled Er-doped suspended-core fibres in a temperature-sensing ring laser system

2013

We report on an experimental/numerical investigation into the use of methanol-filled Er-doped suspended-core fibres (SCFs) in temperature-sensing ring laser systems. We have adopted a ring laser configuration that includes an Er-doped SCF as a temperature-dependent attenuator (TDA) with a step-index Er-doped fibre (EDF) as the laser active medium. The laser performance dependence on the temperature was measured both in continuous wave (CW) and transient regimes. CW laser output power and build-up time values are compared with those of similar laser systems based on other types of Er-doped PCFs or using other laser configurations. A notable variation of 0.73% °C−1 was achieved in CW operatio…

Attenuator (electronics)Distributed feedback laserMaterials sciencebusiness.industryDopingPhysics::OpticsRing laserCondensed Matter PhysicsLaserIndustrial and Manufacturing EngineeringAtomic and Molecular Physics and Opticslaw.inventionRound-trip gainOpticslawContinuous waveLaser power scalingbusinessInstrumentationLaser Physics
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Direct determination of halogens in powdered geological and environmental samples using isotope dilution laser ablation ICP-MS

2005

Abstract Laser ablation inductively coupled plasma isotope dilution mass spectrometry (LA-ICP-IDMS) with a special laser ablation system for bulk analyses (LINA-Spark™-Atomiser) was applied for direct determinations of chlorine, bromine, and iodine in rock and sediment samples. Special attention was focused on possible inter-halogen fractionations and analyte/spike isotope fractionations by using LA-ICP-MS and LA-ICP-IDMS, respectively. A variation of Br/Cl and I/Cl element intensity ratios by a factor of 1.3–3 was observed when changing the nebulizer gas flow rate in the range of 0.84–1.0 L min−1 and the laser power density in the range of 2–10 GW cm−2, respectively. When using an internal…

BromineLaser ablationIsotopeAnalytical chemistrychemistry.chemical_elementIsotope dilutionCondensed Matter PhysicschemistryHalogenLaser power scalingPhysical and Theoretical ChemistryInductively coupled plasmaInstrumentationInductively coupled plasma mass spectrometrySpectroscopyInternational Journal of Mass Spectrometry
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Demonstration of an efficient pumping scheme for a 7.36-nm Ni-like samarium soft x-ray laser

2010

The demonstration of a 7.36 nm Ni-like Sm soft x-ray laser pumped by 36 J of a Nd:glass chirped pulse amplification laser is presented. Double-pulse single-beam non-normal incidence pumping was applied for the efficient soft x-ray laser generation. Here the applied technique included a new single optic focusing geometry for large beam diameters, a single-pass grating compressor traveling-wave tuning capability and an optimized high energy laser double-pulse. This scheme has the potential for even shorter wavelength soft x-ray laser pumping.

Chirped pulse amplificationDistributed feedback laserMaterials scienceActive laser mediumbusiness.industryAstrophysics::High Energy Astrophysical PhenomenaFar-infrared laserPhysics::OpticsLaser pumpingLaserlaw.inventionOpticslawOptoelectronicsPhysics::Atomic PhysicsLaser power scalingLaser beam qualitybusinessSPIE Proceedings
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Automatic Processing Scheme for Low Laser Invasiveness Electro Optical Frequency Mapping mode

2016

International audience; Electro optical techniques are efficient backside contactless techniques usually used for design debug and defect location in modern VLSI. Unfortunately, the signal to noise ratio is quite low and depends on laser power with potential device stress due to long acquisition time or high laser power, especially in up to date technologies. Under these conditions, to maintain a good signal or image quality, specific signal or image processing techniques can be implemented. In this paper, we proposed a new spatial filtering by stationary wavelets and contrast enhancement which allows the use of low laser power and short acquisition time in image mode.

Contrast enhancementImage qualityComputer science[SPI] Engineering Sciences [physics]Wavelet shrinkageComputingMethodologies_IMAGEPROCESSINGANDCOMPUTERVISIONEOFMImage processing02 engineering and technology01 natural sciencesSignallaw.invention[SPI]Engineering Sciences [physics]Image modeSignal-to-noise ratiolaw0103 physical sciences0202 electrical engineering electronic engineering information engineeringElectronic engineering[ SPI ] Engineering Sciences [physics]EOPLaser power scalingStationary Wavelet Transform010302 applied physicsSpatial filter020208 electrical & electronic engineeringLaser[SPI.TRON] Engineering Sciences [physics]/Electronics[ SPI.TRON ] Engineering Sciences [physics]/Electronics[SPI.TRON]Engineering Sciences [physics]/ElectronicsFiltering
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A distributed model for continuous-wave erbium-doped fiber laser

2011

Abstract A distributed model of a continuous-wave erbium-doped fiber laser is discussed. The model is based on two contra-propagated traveling laser waves, and includes inhomogeneous pumping, excited state absorption at the pump and the laser wavelengths, amplified spontaneous emission and radial distribution of populations of erbium levels. It is shown that excited state absorption is a main limiting factor to the laser's efficiency. Moreover, consideration of radial distributions of erbium levels' populations in the model reduces laser efficiency and decreases optimal reflection of the laser output coupler. The modeling results are in excellent agreement with the experimental study on the…

Distributed feedback laserActive laser mediumMaterials sciencebusiness.industryPhysics::Opticschemistry.chemical_elementOutput couplerLaser pumpingLaserAtomic and Molecular Physics and OpticsElectronic Optical and Magnetic Materialslaw.inventionErbiumOpticschemistrylawFiber laserPhysics::Atomic PhysicsLaser power scalingElectrical and Electronic EngineeringPhysical and Theoretical ChemistrybusinessOptics Communications
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High-efficiency Q-switched erbium fiber laser using a Bragg grating-based modulator

2002

Abstract In this work we analyze the behavior of an erbium-doped fiber laser which is based on a simple scheme. Excitation of the active medium is performed in the 980 nm pump band with a CW semiconductor laser source. Two fiber Bragg gratings acting as mirrors of the Fabry–Perot laser cavity were used. One of these gratings was mounted over a piezoelectric (PZT) element. By applying voltage pulses to the piezoelectric, the laser cavity was temporally modulated and Q-switched laser pulses up to 530 mW peak powers at 3 kHz were obtained. Typical laser emission of 2–3 μs temporal widths and 0.1 nm of optical bandwidth have been achieved when the system was operated at 18.5 kHz repetition rate…

Distributed feedback laserMaterials scienceActive laser mediumbusiness.industryLaser pumpingLaserAtomic and Molecular Physics and OpticsElectronic Optical and Magnetic MaterialsSelf-pulsationlaw.inventionOpticsFiber Bragg gratinglawFiber laserOptoelectronicsLaser power scalingElectrical and Electronic EngineeringPhysical and Theoretical ChemistrybusinessOptics Communications
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Dual-kind Q-switching of erbium fiber laser

2014

Two different regimes of Q-switching in the same implementation of an actively Q-switched erbium-doped fiber laser are demonstrated. Depending on the active fiber length and repetition rate of an intracavity Q-cell (acousto-optic modulator), the laser operates either in the regime of common, rather long and low-power, pulses composed of several sub-pulses or in the one of very short and powerful stimulated Brillouin scattering-induced pulses. The basic physical reason of the laser system to oscillate in one of these two regimes is the existence or absence of CW narrow-line “bad-cavity” lasing in the intervals when the Q-cell is blocked.

Distributed feedback laserMaterials sciencePhysics and Astronomy (miscellaneous)business.industryPhysics::OpticsFísicaLaser pumpingÒpticaLaserQ-switchingGain-switchinglaw.inventionOpticslawFiber laserOptoelectronicsLaser power scalingbusinessLasing threshold
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Nonlinear dynamics of a two-photon Fabry–Pérot laser

2000

Abstract The steady-state emission, stability and temporal dynamics of a single-mode two-photon laser with a Fabry–Perot cavity is investigated and compared with that of a ring-cavity laser. It is found that the Fabry–Perot cavity makes the laser less efficient than the ring cavity because of spatial hole burning, but the domain of stability is larger for the Fabry–Perot laser. The intensity and phase dynamics are numerically investigated and distinctive features are found in the phase dynamics as compared with one-photon lasers.

Distributed feedback laserMaterials sciencePhysics::Instrumentation and Detectorsbusiness.industryAstrophysics::Instrumentation and Methods for AstrophysicsPhysics::OpticsInjection seederLaserAtomic and Molecular Physics and OpticsElectronic Optical and Magnetic MaterialsIntensity (physics)law.inventionNonlinear systemOpticsTwo-photon excitation microscopylawPhysics::Atomic PhysicsLaser power scalingElectrical and Electronic EngineeringPhysical and Theoretical ChemistrybusinessFabry–Pérot interferometerOptics Communications
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