Search results for "scattering"

showing 10 items of 8332 documents

"Table 1" of "Measurement of W pair production in e+ e- collisions at centre-of-mass energies from 183-GeV to 209-GeV."

2004

The measured cross section for the E NU E NU final state. The DSYS error is the typical systematic error.

183.0-207.0Electron productionE+ E- ScatteringIntegrated Cross SectionExclusiveCross SectionSIGW ProductionE+ E- --> W+ W-E+ E- --> E+ NUE E- NUEBAR
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"Table 1" of "Measurement and Interpretation of Fermion-Pair Production at LEP Energies of 183 and 189 GeV"

2003

No description provided.

189.0E+ E- ScatteringIntegrated Cross SectionE+ E- --> (GAMMAS) QUARK QUARKBARExclusiveCross SectionSIG
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A Study of the Direct Spectral Transform for the Defocusing Davey‐Stewartson II Equation the Semiclassical Limit

2019

International audience; The defocusing Davey-Stewartson II equation has been shown in numerical experiments to exhibit behavior in the semiclassical limit that qualitatively resembles that of its one-dimensional reduction, the defocusing nonlinear Schrodinger equation, namely the generation from smooth initial data of regular rapid oscillations occupying domains of space-time that become well-defined in the limit. As a first step to studying this problem analytically using the inverse scattering transform, we consider the direct spectral transform for the defocusing Davey-Stewartson II equation for smooth initial data in the semiclassical limit. The direct spectral transform involves a sing…

1st-order systemsApplied MathematicsGeneral Mathematics010102 general mathematicsSemiclassical physics01 natural sciencesinverse scattering transform0103 physical sciencesnonlinear schrodinger-equationLimit (mathematics)0101 mathematics[MATH]Mathematics [math]010306 general physicsMathematicsMathematical physicsCommunications on Pure and Applied Mathematics
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"Table 8" of "Cross Sections for the Reactions e+e- --> K+ K- pi+pi-, K+ K- pi0pi0, and K+ K- K+ K- Measured Using Initial-State Radiation Events"

2013

Cross section measurements for the reaction E+ E- --> K+ K- K+ K-. Statistical errors only.

2.0125-4.4875Strange productionE+ E- ScatteringIntegrated Cross SectionExclusiveCross SectionE+ E- --> K+ K- K+ K-SIG
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"Table 33" of "Measurement of the proton and deuteron structure functions, F2(p) and F2(d), and of the ratio sigma(L)/sigma(T)."

1997

Measurement of R=(SIG(L)/SIG(T)).

21.677ComputingMilieux_THECOMPUTINGPROFESSIONGeneralLiterature_INTRODUCTORYANDSURVEYInformationSystems_INFORMATIONINTERFACESANDPRESENTATION(e.g.HCI)Integrated Cross SectionMUON P --> MUON XRDeep Inelastic ScatteringCross SectionSIGMuon productionInclusiveInformationSystems_MODELSANDPRINCIPLESMUON DEUT --> MUON XInformationSystems_MISCELLANEOUS
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"Table 3" of "Measurement of inclusive jet and dijet cross sections in proton-proton collisions at 7 TeV centre-of-mass energy with the ATLAS detecto…

2010

Inclusive jet double-differential cross sections in the |rapidity| range 0.8 to 1.2, using a jet resolution R value of 0.4. The three (sys) errors are respectively, the Absolute JES, the Unfolding and the Luminosity uncertainties.

26119402611940Astrophysics::High Energy Astrophysical PhenomenaRapidity Dependence7000.0Astrophysics::Cosmology and Extragalactic AstrophysicsJet ProductionP P --> JET XInclusiveProton-Proton ScatteringHigh Energy Physics::ExperimentD2SIG/DPT/DYRAPTransverse Momentum DependenceDouble Differential Cross SectionAstrophysics::Galaxy Astrophysics
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"Table 8" of "Measurement of inclusive jet and dijet cross sections in proton-proton collisions at 7 TeV centre-of-mass energy with the ATLAS detecto…

2010

Inclusive jet double-differential cross sections in the |rapidity| range 0.8 to 1.2, using a jet resolution R value of 0.6. The three (sys) errors are respectively, the Absolute JES, the Unfolding and the Luminosity uncertainties.

26119402611940Astrophysics::High Energy Astrophysical PhenomenaRapidity Dependence7000.0Astrophysics::Cosmology and Extragalactic AstrophysicsJet ProductionP P --> JET XInclusiveProton-Proton ScatteringHigh Energy Physics::ExperimentD2SIG/DPT/DYRAPTransverse Momentum DependenceDouble Differential Cross SectionAstrophysics::Galaxy Astrophysics
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Mapping an electron wave function by a local electron scattering probe

2015

A technique is developed which allows for the detailed mapping of the electronic wave function in two-dimensional electron gases with low-temperature mobilities up to $15\times {10}^{6}\;{\mathrm{cm}}^{2}\;{{\rm{V}}}^{-1}\;{{\rm{s}}}^{-1}$. Thin ('delta') layers of aluminium are placed into the regions where the electrons reside. This causes electron scattering which depends very locally on the amplitude of the electron wave function at the position of the Al δ-layer. By changing the distance of this layer from the interface we map the shape of the wave function perpendicular to the interface. Despite having a profound effect on the electron mobiliy, the δ-layers do not cause a widening of …

2DEG; Heterostructures; Electron wave function; GaAs/AlGaAs; Electron scatteringFOS: Physical sciencesGeneral Physics and Astronomychemistry.chemical_element02 engineering and technologyElectronQuantum Hall effect01 natural sciencesGaAs/AlGaAsElectron wave functionAluminiumPosition (vector)2DEGMesoscale and Nanoscale Physics (cond-mat.mes-hall)0103 physical sciencesPerpendicularHeterostructuresElectron scattering010306 general physicsWave functionPhysicsCondensed Matter - Mesoscale and Nanoscale PhysicsCondensed matter physics021001 nanoscience & nanotechnologyAmplitudechemistryheterostructureselectron scattering0210 nano-technologyElectron scatteringelectron wave function
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"Table 1" of "Evidence of a broad structure at an invariant mass of 4.32- GeV/c**2 in the reaction e+ e- ---> pi+ pi- psi(2S) measured at BaBar"

2008

The measured c.m. energy dependence of the cross section with statistical errors only.. Bins with no recorded data are shown as a 'dash'.

3.985-7.985E+ E- ScatteringComputer Science::MultimediaE+ E- --> PI+ PI- PSI(3685)Integrated Cross SectionExclusivePsiCross SectionSIG
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Glycerosomes: Use of hydrogenated soy phosphatidylcholine mixture and its effect on vesicle features and diclofenac skin penetration.

2016

In this work, diclofenac was encapsulated, as sodium salt, in glycerosomes containing 10, 20 or 30% of glycerol in the water phase with the aim to ameliorate its topical efficacy. Taking into account previous findings, glycerosome formulation was modified, in terms of economic suitability, using a cheap and commercially available mixture of hydrogenated soy phosphatidylcholine (P90H). P90H glycerosomes were spherical and multilamellar; photon correlation spectroscopy showed that obtained vesicles were ∼131nm, slightly larger and more polydispersed than those made with dipalmitoylphosphatidylcholine (DPPC) but, surprisingly, they were able to ameliorate the local delivery of diclofenac, whic…

3003GlycerolKeratinocytesDiclofenacSwineSkin Absorptionpig skinPharmaceutical Science02 engineering and technology030226 pharmacology & pharmacyDSC03 medical and health scienceschemistry.chemical_compound0302 clinical medicineDiclofenacDrug Delivery SystemsOrgan Culture TechniquesDynamic light scatteringPhosphatidylcholinemedicineGlycerolAnimalsHumansCells CulturedChromatographyhydrogenated phospholipid vesiclesChemistryVesicle(trans)dermal drug delivery; DSC; hydrogenated phospholipid vesicles; keratinocytes; pig skin; rheology; 3003021001 nanoscience & nanotechnology(trans)dermal drug deliveryDipalmitoylphosphatidylcholineSkin penetrationDrug deliveryPhosphatidylcholinesrheologyHydrogenationSoybeans0210 nano-technologymedicine.drugInternational journal of pharmaceutics
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