Search results for "High Energy Physics - Lattice"

showing 10 items of 466 documents

A one-loop study of matching conditions for static-light flavor currents

2012

Heavy Quark Effective Theory (HQET) computations of semi-leptonic decays, e.g. B -> pi l nu, require the knowledge of the parameters in the effective theory for all components of the heavy-light flavor currents. So far non-perturbative matching conditions have been employed only for the time component of the axial current. Here we perform a check of matching conditions for the time component of the vector current and the spatial component of the axial vector current up to one-loop order of perturbation theory and to lowest order of the 1/m-expansion. We find that the proposed observables have small higher order terms in the 1/m-series and are thus excellent candidates for a non-perturbat…

PhysicsMatching (statistics)Nuclear and High Energy PhysicsCurrent (mathematics)010308 nuclear & particles physicsComponent (thermodynamics)ComputationHigh Energy Physics - Lattice (hep-lat)Mathematical analysisHigh Energy Physics::PhenomenologyFOS: Physical sciencesObservable01 natural sciencesHigh Energy Physics - Lattice0103 physical sciencesEffective field theoryddc:530Perturbation theory (quantum mechanics)010306 general physicsPseudovector
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Numerical Stochastic Perturbation Theory and the Gradient Flow

2013

We study the Yang-Mills gradient flow using numerical stochastic perturbation theory. As an application of the method we consider the recently proposed gradient flow coupling in the Schr\"odinger functional for the pure SU(3) gauge theory.

PhysicsMathematical analysisNumerical algorithmHigh Energy Physics - Lattice (hep-lat)FOS: Physical sciencesLattice QCDYang–Mills theoryPerturbation theoryPoincaré–Lindstedt methodFIS/02 - FISICA TEORICA MODELLI E METODI MATEMATICIsymbols.namesakeLangevin equationHigh Energy Physics::TheoryHamiltonian lattice gauge theoryHigh Energy Physics - LatticeMean field theoryFlow (mathematics)Gradient flowsymbolsGauge theoryPerturbation theoryk·p perturbation theoryMathematical physics
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Study of the anomalous magnetic moment of the muon computed from the Adler function

2014

We compute the Adler function on the lattice from vacuum polarization data with twisted boundary conditions using numerical derivatives. The study is based on CLS ensembles with two flavours of $O(a)$ improved Wilson fermions. We extrapolate the lattice data for the Adler function to the continuum limit and to the physical pion mass and analyze its dependence on the momentum transfer. We discuss the application of this method to the extraction of the $u,d$ contribution to $a_\mu^{\mathrm{HLO}}$.

PhysicsMuonAnomalous magnetic dipole moment010308 nuclear & particles physicsHigh Energy Physics::LatticeMomentum transferHigh Energy Physics - Lattice (hep-lat)FOS: Physical scienceshep-latFermion01 natural sciencesPionHigh Energy Physics - LatticeQuantum electrodynamicsLattice (order)0103 physical sciencesBoundary value problemVacuum polarization010306 general physicsPoS(LATTICE2014)162
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Applying the relativistic quantization condition to a three-particle bound state in a periodic box

2017

Using our recently developed relativistic three-particle quantization condition, we study the finite-volume energy shift of a spin-zero three-particle bound state. We reproduce the result obtained using non-relativistic quantum mechanics by Meissner, Rios and Rusetsky, and generalize the result to a moving frame.

PhysicsNuclear Theory010308 nuclear & particles physicsHigh Energy Physics - Lattice (hep-lat)FOS: Physical sciences01 natural sciencesNuclear Theory (nucl-th)Quantization (physics)High Energy Physics - LatticeMoving frameQuantum mechanics0103 physical sciencesBound stateEnergy shift010306 general physicsPhysical Review D
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Chiral Instabilities and the Onset of Chiral Turbulence in QED Plasmas

2020

We present a first principles study of chiral plasma instabilities and the onset of chiral turbulence in QED plasmas far from equilibrium. By performing classical-statistical lattice simulations of the microscopic theory, we show that the generation of strong helical magnetic fields from a helicity imbalance in the fermion sector proceeds via three distinct phases. During the initial linear instability regime the helicity imbalance of the fermion sector causes an exponential growth(damping) of magnetic field modes with right(left) handed polarization, for which we extract the characteristic growth (damping) rates. Secondary growth of unstable modes accelerates the helicity transfer from fer…

PhysicsNuclear Theorylattice field theoryGeneral Physics and AstronomyFermionPlasmahiukkasfysiikka01 natural sciencesHelicityInstabilityComputer Science::Digital LibrariesMagnetic fieldplasma instabilitilesHigh Energy Physics - PhenomenologyHigh Energy Physics - LatticeMagnetic helicityQuantum electrodynamics0103 physical scienceskvanttikenttäteoriaMicroscopic theoryAstrophysics - High Energy Astrophysical Phenomena010306 general physicsScalingplasma (kaasut)
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Magnetic field driven enhancement of the weak decay width of charged pions

2020

We study the effect of a uniform magnetic field B→ on the decays π⁻ → l⁻ ν⁻l, where l⁻ = e⁻, μ⁻, carrying out a general analysis that includes four π⁻ decay constants. Taking the values of these constants from a chiral effective Nambu-Jona-Lasinio (NJL) model, it is seen that the total decay rate gets strongly increased with respect to the B = 0 case, with an enhancement factor ranging from ∼ 10 for eB = 0.1 GeV² up to ∼ 10³ for eB = 1 GeV². The ratio between electronic and muonic decays gets also enhanced, reaching a value of about 1 : 2 for eB = 1 GeV². In addition, we find that for large B the angular distribution of outgoing antineutrinos shows a significant suppression in the direction…

PhysicsNuclear and High Energy Physics010308 nuclear & particles physicsHigh Energy Physics - Lattice (hep-lat)FísicaFOS: Physical sciences//purl.org/becyt/ford/1.3 [https]QCD Phenomenology7. Clean energy01 natural sciencesMagnetic fieldNuclear physics//purl.org/becyt/ford/1 [https]High Energy Physics - PhenomenologyPionHigh Energy Physics - LatticeHigh Energy Physics - Phenomenology (hep-ph)0103 physical scienceslcsh:QC770-798lcsh:Nuclear and particle physics. Atomic energy. RadioactivityHigh Energy Physics::Experiment010306 general physicsCiencias Exactas
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Correlators of left charges and weak operators in finite volume chiral perturbation theory

2002

We compute the two-point correlator between left-handed flavour charges, and the three-point correlator between two left-handed charges and one strangeness violating \Delta I=3/2 weak operator, at next-to-leading order in finite volume SU(3)_L x SU(3)_R chiral perturbation theory, in the so-called epsilon-regime. Matching these results with the corresponding lattice measurements would in principle allow to extract the pion decay constant F, and the effective chiral theory parameter g_27, which determines the \Delta I = 3/2 amplitude of the weak decays K to \pi\pi as well as the kaon mixing parameter B_K in the chiral limit. We repeat the calculations in the replica formulation of quenched c…

PhysicsNuclear and High Energy PhysicsChiral perturbation theoryFinite volume methodHigh Energy Physics::LatticeFlavourHigh Energy Physics - Lattice (hep-lat)FOS: Physical sciencesFísicaParticle Physics - LatticeStrangenessweak decaysOperator (computer programming)AmplitudeHigh Energy Physics - Latticechiral Lagrangianslattice QCDLattice (order)kaon physicsPion decay constantMathematical physics
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Locality properties of Neuberger's lattice Dirac operator

1998

The gauge covariant lattice Dirac operator D which has recently been proposed by Neuberger satisfies the Ginsparg-Wilson relation and thus preserves chiral symmetry. The operator also avoids a doubling of fermion species, but its locality properties are not obvious. We now prove that D is local (with exponentially decaying tails) if the gauge field is sufficiently smooth at the scale of the cutoff. Further analytic and numerical studies moreover suggest that the locality of the operator is in fact guaranteed under far more general conditions.

PhysicsNuclear and High Energy PhysicsChiral symmetryHigh Energy Physics::LatticeHigh Energy Physics - Lattice (hep-lat)LocalityFOS: Physical sciencesFísicaParticle Physics - LatticeFermionDirac operatorsymbols.namesakeHigh Energy Physics - LatticeLattice (order)symbolsCutoffCovariant transformationGauge theoryMathematical physics
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Interpolation of non-abelian lattice gauge fields

1996

We propose a method for interpolating non-abelian lattice gauge fields to the continuum, or to a finer lattice, which satisfies the properties of (i) transverse continuity, (ii) (lattice) rotation and translation covariance, (iii) gauge covariance, (iv) locality. These are the properties required for use in our earlier proposal for non-perturbative formulation and simulation of chiral gauge theories.

PhysicsNuclear and High Energy PhysicsContinuum (measurement)High Energy Physics::LatticeHigh Energy Physics - Lattice (hep-lat)High Energy Physics::PhenomenologyLocalityFOS: Physical sciencesFísicaCovarianceHigh Energy Physics - PhenomenologyHigh Energy Physics::TheoryTransverse planeHigh Energy Physics - LatticeHigh Energy Physics - Phenomenology (hep-ph)Lattice (order)Gauge theoryAbelian groupMathematical physicsInterpolationNuclear Physics B
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A new representation of the Adler function for lattice QCD

2013

We address several aspects of lattice QCD calculations of the hadronic vacuum polarization and the associated Adler function. We implement a representation derived previously which allows one to access these phenomenologically important functions for a continuous set of virtualities, irrespective of the flavor structure of the current. Secondly we present a theoretical analysis of the finite-size effects on our particular representation of the Adler function, based on the operator product expansion at large momenta and on the spectral representation of the Euclidean correlator at small momenta. Finally, an analysis of the flavor structure of the electromagnetic current correlator is perform…

PhysicsNuclear and High Energy PhysicsCurrent (mathematics)DiagramLattice field theoryHigh Energy Physics - Lattice (hep-lat)High Energy Physics::PhenomenologyRepresentation (systemics)FOS: Physical sciencesFunction (mathematics)Lattice QCDHigh Energy Physics - PhenomenologyHigh Energy Physics - Phenomenology (hep-ph)High Energy Physics - LatticeVacuum polarizationOperator product expansionMathematical physics
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