Search results for "Computer Science::Symbolic Computation"

showing 10 items of 92 documents

"Table 3" of "J/psi polarization in pp collisions at sqrt(s)=7 TeV"

2016

$\lambda_\theta$ as a function of $p_{\rm T}$ for inclusive J/$\psi$, measured in the Collins-Soper reference frame.

LAMBDA_THETAInclusiveProton-Proton ScatteringHigh Energy Physics::Phenomenology7000.0Computer Science::Symbolic ComputationP P --> JPSI XMuon production
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"Table 24" of "Collins and Sivers asymmetries for pions and kaons in muon-deuteron DIS"

2008

The Collins and Sivers asymmetry as a function of Z for 'LEADING' positive kaons from the 2003-2004 data.. Errors are statistical only.

MU+ DEUT --> MU+ K+ XInclusiveStrange productionAsymmetry MeasurementNuclear TheoryNeutral CurrentDeep Inelastic ScatteringComputer Science::Symbolic ComputationHigh Energy Physics::ExperimentNuclear ExperimentMuon productionASYM
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"Table 22" of "Collins and Sivers asymmetries for pions and kaons in muon-deuteron DIS"

2008

The Collins and Sivers asymmetry as a function of X for 'LEADING' positive kaons from the 2003-2004 data.. Errors are statistical only.

MU+ DEUT --> MU+ K+ XInclusiveStrange productionAsymmetry MeasurementNuclear TheoryNeutral CurrentDeep Inelastic ScatteringComputer Science::Symbolic ComputationHigh Energy Physics::ExperimentNuclear ExperimentMuon productionASYM
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"Table 9" of "Collins and Sivers asymmetries for pions and kaons in muon-deuteron DIS"

2008

The Collins and Sivers asymmetry as a function of Z for 'ALL' positive kaons from the 2003-2004 data.. Errors are statistical only.

MU+ DEUT --> MU+ K+ XInclusiveStrange productionAsymmetry MeasurementNuclear TheoryNeutral CurrentDeep Inelastic ScatteringComputer Science::Symbolic ComputationHigh Energy Physics::ExperimentNuclear ExperimentMuon productionASYM
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Transmission Efficiency of the SAGE Spectrometer Using GEANT4

2013

The new SAGE spectrometer allows simultaneous electron and γ-ray in-beam studies of heavy nuclei. A comprehensive GEANT4 simulation suite has been created for the SAGE spectrometer. This includes both the silicon detectors for electron detection and the germanium detectors for γ-ray detection. The simulation can be used for a wide variety of tests with the aim of better understanding the behaviour of SAGE. A number of aspects of electron transmission are presented here.

Materials scienceSpectrometerSiliconta114Physics::Instrumentation and Detectors010308 nuclear & particles physicsbusiness.industrySAGEDetectorchemistry.chemical_elementGermaniumElectron01 natural sciences3. Good healthElectron transmissionchemistryTransmission (telecommunications)0103 physical sciencesOptoelectronicsComputer Science::Symbolic ComputationNuclear Experiment010306 general physicsbusinessFission and Properties of Neutron-Rich Nuclei, pg. 332 (2013)
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Error bounds for a convexity-preserving interpolation and its limit function

2008

AbstractError bounds between a nonlinear interpolation and the limit function of its associated subdivision scheme are estimated. The bounds can be evaluated without recursive subdivision. We show that this interpolation is convexity preserving, as its associated subdivision scheme. Finally, some numerical experiments are presented.

Mathematical optimizationNonlinear subdivision schemesbusiness.industryApplied MathematicsNumerical analysisMathematicsofComputing_NUMERICALANALYSISStairstep interpolationComputer Science::Computational GeometryConvexityMultivariate interpolationComputational MathematicsError boundsComputer Science::GraphicsNearest-neighbor interpolationTheoryofComputation_ANALYSISOFALGORITHMSANDPROBLEMCOMPLEXITYComputingMethodologies_SYMBOLICANDALGEBRAICMANIPULATIONApplied mathematicsComputer Science::Symbolic ComputationConvexity preservingbusinessSpline interpolationSubdivisionInterpolationMathematicsComputingMethodologies_COMPUTERGRAPHICSJournal of Computational and Applied Mathematics
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Weyl symbols and boundedness of Toeplitz operators

2019

International audience; We study Toeplitz operators on the Bargmann space, with Toeplitz symbols that are exponentials of inhomogeneous quadratic polynomials. It is shown that the boundedness of such operators is implied by the boundedness of the corresponding Weyl symbols.

Mathematics::Functional AnalysisMathematics - Complex VariablesMathematics::Operator AlgebrasGeneral Mathematics010102 general mathematicsMathematics::Classical Analysis and ODEs32U05 32W25 35S30 47B3501 natural sciencesToeplitz matrixFunctional Analysis (math.FA)AlgebraMathematics - Functional AnalysisFOS: MathematicsComputer Science::Symbolic Computation0101 mathematicsComplex Variables (math.CV)[MATH]Mathematics [math]Mathematics
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"Table 26" of "Measurement of the Collins and Sivers asymmetries on transversely polarised protons"

2007

The COLLINS asymmetry for negatively charged hadrons as a function of W for X < 0.032.

POLInclusive160160PolarizationHigh Energy Physics::PhenomenologyNeutral CurrentDeep Inelastic ScatteringComputer Science::Symbolic ComputationHigh Energy Physics::ExperimentAstrophysics::Earth and Planetary AstrophysicsNuclear ExperimentMU+ P --> MU+ HADRON- XMuon production
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"Table 22" of "Measurement of the Collins and Sivers asymmetries on transversely polarised protons"

2007

The COLLINS asymmetry for negatively charged hadrons as a function of W for X > 0.032.

POLInclusive160160PolarizationHigh Energy Physics::PhenomenologyNeutral CurrentDeep Inelastic ScatteringComputer Science::Symbolic ComputationHigh Energy Physics::ExperimentAstrophysics::Earth and Planetary AstrophysicsNuclear ExperimentMU+ P --> MU+ HADRON- XMuon production
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"Table 30" of "Measurement of the Collins and Sivers asymmetries on transversely polarised protons"

2007

The COLLINS asymmetry for negatively charged hadrons as a function of X for W > 7.5 GeV.

POLInclusive160160PolarizationHigh Energy Physics::PhenomenologyNeutral CurrentDeep Inelastic ScatteringComputer Science::Symbolic ComputationHigh Energy Physics::ExperimentNuclear ExperimentMU+ P --> MU+ HADRON- XMuon productionAstrophysics::Galaxy Astrophysics
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