0000000000659764

AUTHOR

E. Seres

showing 6 related works from this author

Laser driven parametric amplification in the xuv and soft-x-ray spectral range

2011

We present the first experimental realization of a new x-ray laser scheme based on strong-field parametric amplification of high-order harmonic radiation. With a simple semi-classical model, we can identify the most important experimental parameters, the spectral range and the small signal gain in gases. Using a single amplifier stage a small signal gain of 8000 has been obtained in Argon for the spectral range of 40-50 eV, using 350 fs, 7 mJ pulses at 1.05 µm. In Helium, we observed a small signal gain of 280 around 300 eV using 6 fs, 1.5 mJ pulses at 800 nm.

Range (particle radiation)ArgonMaterials sciencebusiness.industryAmplifierchemistry.chemical_elementLaserOptical parametric amplifierlaw.inventionOpticschemistrylawExtreme ultravioletbusinessHeliumParametric statistics
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Laser-driven amplification of soft X-rays by parametric stimulated emission in neutral gases

2010

The high-order harmonics of short laser pulses created in a nonlinear medium are a useful source of extreme-ultraviolet and soft-X-ray radiation. A newly discovered phenomenon that amplifies this emission even further could improve the efficiency of short-wavelength light sources.

Physicsbusiness.industryAstrophysics::High Energy Astrophysical PhenomenaOptical physicsGeneral Physics and AstronomyRadiationLaserOptical parametric amplifierlaw.inventionOpticslawHarmonicsNonlinear mediumStimulated emissionbusinessLasing thresholdNature Physics
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Laser driven X-ray parametric amplification in neutral gases—a new brilliant light source in the XUV

2011

Abstract In this paper we present the experimental setup and results showing a new type of strong-field parametric amplification of high-order harmonic radiation. With a simple semi-classical model, we can identify the most important experimental parameters, the spectral range and the small signal gain in gases. Using a single stage amplifier, a small signal gain of 8000 has been obtained in argon for the spectral range of 40–50 eV, using 350 fs, 7 mJ pulses at 1.05 μm. An outlook for an experiment employing a double stage gas system will be given.

PhysicsNuclear and High Energy PhysicsRange (particle radiation)Argonbusiness.industryAmplifierX-raychemistry.chemical_elementLaserOptical parametric amplifierlaw.inventionOpticschemistrylawExtreme ultravioletbusinessInstrumentationParametric statisticsNuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment
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Reply to 'The super-quadratic growth of high-harmonic signal as a function of pressure'

2010

Quadratic growthPhysicsbusiness.industryMathematical analysisOptical physicsGeneral Physics and AstronomyFunction (mathematics)SignalNonlinear systemHarmonicFluid dynamicsStatistical physicsPhotonicsbusinessNature Physics
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Laser driven parametric amplification of xuv and soft-x-rays in neutral gases

2010

We present the first theoretical description and also experimental evidence for the amplification of XUV and soft-X-ray radiation by parametric stimulated emission in neutral gases driven by near-IR laser pulses reaching small-signal-gain up to 8000.

Physicsbusiness.industryAstrophysics::High Energy Astrophysical PhenomenaNonlinear opticsRadiationLaserMagnetic fieldlaw.inventionOpticslawExtreme ultravioletUltrafast laser spectroscopyOptoelectronicsStimulated emissionbusinessParametric statistics
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Strong field amplification of XUV: phase matching aspects

2011

The dependence of the yield of high-order harmonic generation (HHG) on several important experimental parameters has been successfully modeled in the last 20 years by taking into account the single atom response and propagation effects. We extended this description by adding a stimulated emission process and named it x-ray parametric amplification (XPA). Beyond the super-quadratic increase of the XUV signal, which can be explained only in a limited pressure range by HHG theory, other observed characteristics like exponential growth, gain narrowing, strong blue-shift, beam divergence, etc. and their dependence on laser intensity and gas pressure can be explained accurately only by the new XP…

PhysicsArgonchemistry.chemical_elementLaserlaw.inventionchemistrylawExtreme ultravioletAtomHigh harmonic generationStimulated emissionAtomic physicsSpectroscopyBeam divergenceSPIE Proceedings
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