Search results for " generation."

showing 10 items of 1108 documents

160-GHz picosecond pulse train generation through multiwave mixing compression of a dual frequency beat signal

2002

We report the experimental generation and characterization of a 160-GHz picosecond puise train using multiple four-wave mixing temporal compression of an initial dual frequency beat signal in the anomalous-dispersion regime of a non-zero dispersion shifted fiber.

PhysicsSum-frequency generationbusiness.industryBeat (acoustics)symbols.namesakeFour-wave mixingOpticsBrillouin scatteringPicosecondsymbolsDual frequencyDispersion-shifted fiberbusinessRaman scatteringNonlinear Guided Waves and Their Applications
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Hot electrons and nonlinear optical nanoantennas

2017

The large field enhancement generated at the surface of a resonant plasmonic nanoparticle, or optical antennas, is the key mechanism that eventually led to the development of nonlinear plasmonics [1-2]. While the resonance may boost the nonlinear yield of an adjacent structure or surrounding medium, it was soon realized that optical antennas possess nonlinear coefficients comparable or exceeding those of standard nonlinear optical materials [3]. We discuss here two nonlinear optical processes — incoherent multi-photon luminescence (MPL) and coherent second-harmonic generation (SHG) — emitted from gold rod optical antennas upon local illumination with a tightly focused femtosecond near-infra…

PhysicsSum-frequency generationbusiness.industryOptical physicsPhysics::OpticsResonanceNonlinear optics02 engineering and technology021001 nanoscience & nanotechnology01 natural sciences010309 opticsNonlinear systemOpticsCross-polarized wave generation0103 physical sciencesFemtosecondOptoelectronics0210 nano-technologybusinessPlasmon2017 Conference on Lasers and Electro-Optics Europe & European Quantum Electronics Conference (CLEO/Europe-EQEC)
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To the theory of high-power gyrotrons with uptapered resonators

2010

In high-power gyrotrons it is desirable to combine an optimal resonator length with the optimal value of the resonator quality factor. In resonators with the constant radius of the central part, the possibilities of this combination are limited because the quality factor of the resonator sharply increases with its length. Therefore the attempts to increase the length for maximizing the efficiency leads to such increase in the quality factor which makes the optimal current too small. Resonators with slightly uptapered profiles offer more flexibility in this regard. In such resonators, one can separate optimization of the interaction length from optimization of the quality factor because the …

PhysicsTerahertz radiationbusiness.industryElectromagnetic spectrumRadiusCondensed Matter Physicslaw.inventionPower (physics)ResonatorElectricity generationNuclear magnetic resonanceOpticsQuality (physics)ModulationlawQ factorGyrotronOptoelectronicsPower modulationbusinessDimensionless quantityPhysics of Plasmas
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Review on up/down conversion materials for solar cell application

2012

The present paper reviews the methods of photon up- and down conversion strategies for improving the efficiency of solar cells. Photons with a lower energy than the band gap will be lost in a normal solar cell. The principle of the up conversion technique is that two or more photons are converted into a photon with energy higher than the band gap energy. High energy photons will lose the energy above the band gap energy limit. Down conversion is a process where a high energy photon is converted into several lower energy photons with energies above the band gap. A description is given of the most common methods and materials for these conversions resulting in higher solar cell efficiencies.

PhysicsTheory of solar cellsOrganic solar cellBand gapThermodynamic efficiency limitbusiness.industryPhysics::OpticsHybrid solar cellPolymer solar celllaw.inventionMultiple exciton generationlawSolar cellOptoelectronicsbusiness2012 38th IEEE Photovoltaic Specialists Conference
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Even harmonics generation of high frequency radiation in current-carrying plasmas

2005

Generation of high frequency radiation harmonics in a current-carrying plasma is studied. The physical mechanism responsible for harmonics generation is provided by electron-ion collisions. The current in the plasma is sustained by a constant electric field. It is shown that the electron distribution function anisotropy due to the static field yields generation of even harmonics. As a result, the radiation spectrum emitted by the current-carrying plasma contains both even and odd harmonics, the latter being attributed to currentless plasma. For a broad range of plasma and high frequency radiation parameters, a detailed analysis of the even harmonics properties is reported.

PhysicsTwo-stream instabilityDense plasma focusPhysics::Plasma PhysicsWaves in plasmasPlasma parametersHarmonicsHigh harmonic generationElectromagnetic electron wavePlasmaAtomic physicsCondensed Matter PhysicsPhysics of Plasmas
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Confinement and high-order harmonic generation by a repulsive potential

2003

The dynamics of an electron wave packet in the presence of laser radiation and of a one-dimensional repulsive soft-core potential is investigated. For different laser intensities and for different initial positions of the electron wave packet, these results are compared with those for an attractive potential. The repulsive potential is capable of confining the electron quite efficiently under appropriate conditions. In these conditions, the electron is shown to emit a high harmonic spectrum similar to that emitted by the more conventional attractive potential. It is thus argued that recombination into an atomic bound state as required by the three step model is not essential for the emissio…

PhysicsWave packetElectronLaserPotential energySettore FIS/03 - Fisica Della MateriaAtomic and Molecular Physics and Opticslaw.inventionHarmonic spectrumHarmonic generation laserlawHarmonicsBound stateHigh harmonic generationAtomic physicsPhysical Review A
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THE LIMITING EFFICIENCY OF FOUR-BAND CELLS REVISITED

2014

The limiting theoretical efficiency of four-band solar cells is revisited. In previous work, researchers have looked at the theoretical efficiency of four band cells where the smallest of the three sub-band gaps is closest to the valence band and the largest closest to the conduction band. In this work, limits are calculated also for other possible band configurations. In multi-band cells, photon selectivity can be assured by adjusting the band widths. The present work shows that previous authors have put too rigid constraints on the band structure to achieve spectral selectivity. Relieving these constraints gives a considerably higher limiting efficiency for cells with band width restricti…

PhysicsWork (thermodynamics)PhotonBand gapbusiness.industryVDP::Technology: 500LimitingMolecular physicsMultiple exciton generationBand widthOptoelectronicssolar cells efficiency photovoltaicsDirect and indirect band gapsElectronic band structurebusiness
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Wave-turbulence approach of supercontinuum generation: Influence of self-steepening and higher-order dispersion

2009

International audience; We analyze the influence of self-steepening and higher-order dispersion on the process of optical wave thermalization. This study is aimed at developing a thermodynamic formulation of supercontinuum generation in photonic crystal fibers. In the highly nonlinear regime of supercontinuum generation, the optical field exhibits a turbulent dynamics that may be described by the kinetic wave theory. In this respect, the phenomenon of spectral broadening inherent to supercontinuum generation may be interpreted as a natural process of thermalization, which is characterized by an irreversible evolution of the optical field toward a thermodynamic equilibrium state. The numeric…

Physics[PHYS.PHYS.PHYS-OPTICS]Physics [physics]/Physics [physics]/Optics [physics.optics][ PHYS.PHYS.PHYS-OPTICS ] Physics [physics]/Physics [physics]/Optics [physics.optics]Thermodynamic equilibriumWave turbulenceWave packetPhysics::OpticsOptical field01 natural sciencesAtomic and Molecular Physics and Optics010305 fluids & plasmasSupercontinuumCross-polarized wave generationQuantum mechanicsQuantum electrodynamics0103 physical sciencesDispersion (optics)Group velocity010306 general physics
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Direct theoretical evidence of nuclear motion in H+2by means of high harmonic generation

2007

The numerical solution of the time-dependent Schro ̈dinger equation for vibrating hydrogen molecular ions in many-cycle laser pulses shows that high- order harmonic generation is sensitive to laser-induced molecular vibrations. In particular, the odd harmonic lines in the emitted spectra are surrounded by additional regular peaks whose spacing is given by the vibrational frequency of the nuclei motion. Analytical theory relates these satellite peaks to the molecular vibrations in terms of an approximated effective potentials. These results are not affected by the dimensionality of the system.

Physicsatomic molecularNonlinear opticsHarmonic (mathematics)Condensed Matter PhysicsDiatomic moleculeAtomic and Molecular Physics and OpticsSpectral lineSchrödinger equationIonsymbols.namesakeMolecular vibrationsymbolsHigh harmonic generationAtomic physicsJournal of Physics B: Atomic, Molecular and Optical Physics
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Spatial Solitons in Quadratic 2D Nonlinear Photonic Crystals

2007

We report on the first investigations into parametric solitary-wave formation in 2D nonlinear photonic crystals and present experimental results obtained in an hexagonally poled LiNbO3 waveguide designed for twin-beam second harmonic generation at telecom wavelengths.

Physicsbusiness.industryLithium niobatePhysics::OpticsNonlinear opticsResonanceSecond-harmonic generationWaveguide (optics)WavelengthNonlinear systemchemistry.chemical_compoundOpticschemistryOptoelectronicsnonlinear optics photonic crystals spatial solitons waveguides lithium niobatebusinessNonlinear Sciences::Pattern Formation and SolitonsPhotonic crystal2007 9th International Conference on Transparent Optical Networks
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