Search results for "Sum rule in quantum mechanics"

showing 10 items of 153 documents

Finite amplitude method applied to giant dipole resonance in heavy rare-earth nuclei

2015

Background: The quasiparticle random phase approximation (QRPA), within the framework of the nuclear density functional theory (DFT), has been a standard tool to access the collective excitations of the atomic nuclei. Recently, finite amplitude method (FAM) has been developed, in order to perform the QRPA calculations efficiently without any truncation on the two-quasiparticle model space. Purpose: We discuss the nuclear giant dipole resonance (GDR) in heavy rare-earth isotopes, for which the conventional matrix diagonalization of the QRPA is numerically demanding. A role of the Thomas-Reiche-Kuhn (TRK) sum rule enhancement factor, connected to the isovector effective mass, is also investig…

Physicsgiant dipole resonanceIsovectorta114Nuclear Theory010308 nuclear & particles physicsNuclear TheoryFOS: Physical sciences01 natural sciences3. Good healthNuclear physicsNuclear Theory (nucl-th)DipoleEffective mass (solid-state physics)0103 physical sciencesAtomic nucleusQuasiparticleheavy nucleiSum rule in quantum mechanics010306 general physicsRandom phase approximationNuclear ExperimentNuclear densityrare-earth elements
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QCD analysis of the tau hadronic width

1992

32 páginas, 1 figura, 4 tablas.-- CERN-TH-6070-91 ; NUHEP-TH-91-8 ; PM-91-8.

Quantum chromodynamicsCoupling constantPhysicsNuclear and High Energy PhysicsParticle physicsFísicaObservableElementary particleNuclear physicsHigh Energy Physics::ExperimentOperator product expansionPerturbation theory (quantum mechanics)Sum rule in quantum mechanicsParticle Physics - PhenomenologyLepton
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and the electroweak penguin contribution

2003

Abstract Our dispersive sum rule calculation of the electroweak penguin contribution to ϵ′ ϵ is reviewed. A more recent analysis based on the finite-energy sum rule approach is described. Finally, a new determination of the electroweak penguin contribution to ϵ′ ϵ is presented.

Quantum chromodynamicsNuclear and High Energy PhysicsParticle physicsHigh Energy Physics::PhenomenologyElectroweak interactionAtomic and Molecular Physics and OpticsStandard ModelCombinatoricsGrand Unified TheoryHigh Energy Physics::ExperimentPerturbation theory (quantum mechanics)Sum rule in quantum mechanicsGauge theoryOperator product expansionMathematicsNuclear Physics B - Proceedings Supplements
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The spin-dependent structure function of the proton g1p and a test of the Bjorken sum rule

2010

Abstract The inclusive double-spin asymmetry, A 1 p , has been measured at COMPASS in deep-inelastic polarised muon scattering off a large polarised NH3 target. The data, collected in the year 2007, cover the range Q 2 > 1 ( GeV / c ) 2 , 0.004 x 0.7 and improve the statistical precision of g 1 p ( x ) by a factor of two in the region x 0.02 . The new proton asymmetries are combined with those previously published for the deuteron to extract the non-singlet spin-dependent structure function g 1 NS ( x , Q 2 ) . The isovector quark density, Δ q 3 ( x , Q 2 ) , is evaluated from a NLO QCD fit of g 1 NS . The first moment of Δ q 3 is in good agreement with the value predicted by the Bjorken su…

Quantum chromodynamicsPhysicsCoupling constantNuclear and High Energy PhysicsParticle physicsMuonIsovectorProton010308 nuclear & particles physicsDeep inelastic scattering01 natural sciencesNuclear physics0103 physical sciencesSum rule in quantum mechanics010306 general physicsSpin-½Physics Letters B
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QCD sum rule analysis of the pentaquark

2005

We perform a QCD sum rule calculation to determine the mass and the parity of the lowest lying pentaquark state. We include operators up to dimension $d=13$ in the OPE and the direct instanton contributions. We find evidence for a positive parity state. The contribution from operators of dimension $d>5$ is instrumental in determining the parity of the state and achieving the convergence of the sum rule.

Quantum chromodynamicsPhysicsNuclear and High Energy PhysicsInstantonParticle physicsHigh Energy Physics::LatticeHigh Energy Physics::PhenomenologyHyperonFOS: Physical sciencesFísicaParity (physics)PentaquarkHigh Energy Physics - PhenomenologyHigh Energy Physics - Phenomenology (hep-ph)Invariant massOperator product expansionSum rule in quantum mechanics
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From Hadronic τ Decays to the Chiral Couplings and

2009

A sum rule analysis of the hadronic τ -decay data can be used to determine the low-energy constants L 10 r ( μ ) and C 87 r ( μ ) . These constants are QCD chiral-order parameters, which appear at order p 4 and p 6 , respectively, in the chiral perturbation theory expansion of the V − A correlator. At order p 4 we obtain L 10 r ( M ρ ) = − ( 5.22 ± 0.06 ) ⋅ 10 − 3 . Including in the analysis the order p 6 contributions, we get L 10 r ( M ρ ) = − ( 4.06 ± 0.39 ) ⋅ 10 − 3 and C 87 r ( M ρ ) = ( 4.89 ± 0.19 ) ⋅ 10 − 3 GeV − 2 .

Quantum chromodynamicsPhysicsNuclear and High Energy PhysicsParticle physicsChiral perturbation theoryHadronOrder (group theory)Sum rule in quantum mechanicsAtomic and Molecular Physics and OpticsNuclear Physics B - Proceedings Supplements
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Results on longitudinal spin physics at COMPASS

2016

Abstract The COMPASS experiment at the CERN SPS has taken data for deep inelastic scattering of polarised muons off a polarised NH3 target in 2007 and 2011 and off a polarised 6LiD target in 2002–2004 and 2006. We present our new results on the longitudinal double spin asymmetry A 1 p and the spin-dependent structure function g 1 p obtained from the 2011 data set. These results are used in a NLO QCD fit to the world data to obtain the polarised parton distributions. Also an update on our results on the Bjorken sum rule, connecting the integral of the non-singlet spin-dependent structure function with the ratio of the weak coupling constants, is given. The gluon polarisation can be accessed …

Quantum chromodynamicsPhysicsNuclear and High Energy PhysicsParticle physicsComputer science010308 nuclear & particles physicsPhysicsQC1-999High Energy Physics::PhenomenologyHadronPartonDeep inelastic scatteringEngineering physics01 natural sciencesGluonNuclear physicsCompass0103 physical sciencesCOMPASS experimentHigh Energy Physics::ExperimentSum rule in quantum mechanicsNuclear Experiment010306 general physicsParticle Physics - ExperimentNuclear and Particle Physics Proceedings
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A Quark model analysis of the Sivers function.

2008

We develop a formalism to evaluate the Sivers function. The approach is well suited for calculations which use constituent quark models to describe the structure of the nucleon. A non-relativistic reduction of the scheme is performed and applied to the Isgur-Karl model of hadron structure. The results obtained are consistent with a sizable Sivers effect and the signs for the u and d flavor contributions turn out to be opposite. This pattern is in agreement with the one found analyzing, in the same model, the impact parameter dependent generalized parton distributions. The Burkardt Sum Rule turns out to be fulfilled to a large extent. We estimate the QCD evolution of our results from the mom…

Quantum chromodynamicsPhysicsNuclear and High Energy PhysicsParticle physicsNuclear TheoryQuark modelHadronHigh Energy Physics::PhenomenologyConstituent quarkFísicaFOS: Physical sciencesPartonNuclear Theory (nucl-th)High Energy Physics - PhenomenologyHigh Energy Physics - Phenomenology (hep-ph)Sum rule in quantum mechanicsImpact parameterNucleonParticle Physics - Phenomenology
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New results on the spin structure function g1 of the proton and the deuteron from SMC

1998

Abstract New results from a measurement of the spin-dependent structure function g 1 p by the SMC are presented. A next-to-leading order QCD analysis of all published data is used to compute g 1 p at a fixed Q 2 of 10 GeV 2 . Two methods for the extrapolation towards x = 0 to determine the first moment are discussed. In both cases the violation of the Ellis-Jaffe sum rule is confirmed. Using the deuteron data in addition the Bjorken sum rule is tested.

Quantum chromodynamicsPhysicsNuclear and High Energy PhysicsParticle physicsProtonDeuteriumQuantum electrodynamicsExtrapolationOrder (group theory)Function (mathematics)Sum rule in quantum mechanicsSpin structureAtomic and Molecular Physics and OpticsNuclear Physics B - Proceedings Supplements
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The pion polarisability from QCD sum rules

1994

Abstract The electromagnetic polarisability of charged pions, α E , has recently attracted both theoretical and experimental attention. Unfortunately the experimental results disagree with each other. We have investigated this polarisation via a QCD sum rule approach and find α E = 5.6 ± 0.5 × 10 −4 fm 3 , which is in agreement with one experiment and disagrees with the result of chiral perturbation theory.

Quantum chromodynamicsPhysicsNuclear and High Energy PhysicsParticle physicsQCD sum rulesChiral perturbation theoryPionHigh Energy Physics::LatticeQuantum electrodynamicsSum rule in quantum mechanicsPhysics Letters B
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