Search results for "lattice [space-time]"

showing 10 items of 692 documents

The leading hadronic contribution to the running of the Weinberg angle using covariant coordinate-space methods

2018

We present a preliminary study of the leading hadronic contribution to the running of the Weinberg angle $\theta_{\mathrm{W}}$. The running is extracted from the correlation function of the electromagnetic current with the vector part of the weak neutral current using both the standard time-momentum representation method and the Lorentz-covariant coordinate-space method recently introduced by Meyer. Both connected and disconnected contributions have been computed on $N_{\mathrm{f}}=2+1$ non-perturbatively $O(a)$-improved Wilson fermions configurations from the CLS initiative. Similar covariant coordinate-space methods can be used to compute the leading hadronic contribution to the anomalous…

PhysicsParticle physicsMuonNeutral currentAnomalous magnetic dipole momentHigh Energy Physics - Lattice (hep-lat)FOS: Physical sciencesWeinberg angleLattice QCDFermionCoupling (probability)High Energy Physics - PhenomenologyHigh Energy Physics - Phenomenology (hep-ph)High Energy Physics - LatticeCovariant transformationCoordinate space
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An estimate for the thermal photon rate from lattice QCD

2017

We estimate the production rate of photons by the quark-gluon plasma in lattice QCD. We propose a new correlation function which provides better control over the systematic uncertainty in estimating the photon production rate at photon momenta in the range {\pi}T/2 to 2{\pi}T. The relevant Euclidean vector current correlation functions are computed with $N_{\mathrm f}$ = 2 Wilson clover fermions in the chirally-symmetric phase. In order to estimate the photon rate, an ill-posed problem for the vector-channel spectral function must be regularized. We use both a direct model for the spectral function and a model-independent estimate from the Backus-Gilbert method to give an estimate for the p…

PhysicsParticle physicsPhoton010308 nuclear & particles physicsPhysicsQC1-999High Energy Physics::LatticeHigh Energy Physics - Lattice (hep-lat)Phase (waves)FOS: Physical sciencesFermionLattice QCD01 natural sciencesCorrelation function (statistical mechanics)High Energy Physics - Lattice0103 physical sciencesThermalRange (statistics)010306 general physicsEuclidean vector
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The η′ meson at the physical point with Nf = 2 Wilson twisted mass fermions

2018

We present results for the η′ meson and the topological susceptibility in Nf = 2 flavour lattice QCD. The results are obtained using Wilson twisted mass fermions at maximal twist with pion masses ranging from 340 MeV down to the physical point. A comparison to literature values is performed giving a handle on discretisation effects.

PhysicsParticle physicsPhysical pointMeson530 Physics010308 nuclear & particles physicsPhysicsQC1-999High Energy Physics::LatticeHigh Energy Physics::PhenomenologyNuclear TheoryFlavourLattice QCDFermion01 natural sciencesPion0103 physical sciencesHigh Energy Physics::ExperimentTwistNuclear Experiment010306 general physicsEPJ Web of Conferences
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The scalar radius of the pion in two-flavor Wilson lattice QCD

2014

PhysicsParticle physicsPionScalar (mathematics)RadiusLattice QCDFlavorProceedings of 31st International Symposium on Lattice Field Theory LATTICE 2013 — PoS(LATTICE 2013)
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Lattice QCD: A Brief Introduction

2014

A general introduction to lattice QCD is given. The reader is assumed to have some basic familiarity with the path integral representation of quantum field theory. Emphasis is placed on showing that the lattice regularization provides a robust conceptual and computational framework within quantum field theory. The goal is to provide a useful overview, with many references pointing to the following chapters and to freely available lecture series for more in-depth treatments of specifics topics.

PhysicsParticle physicsTheoretical physicssymbols.namesakeWilson loopLattice (order)Regularization (physics)Path integral formulationLattice field theorysymbolsLattice QCDQuantum field theoryDirac operator
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Monte Carlo tests of renormalization-group predictions for critical phenomena in Ising models

2001

Abstract A critical review is given of status and perspectives of Monte Carlo simulations that address bulk and interfacial phase transitions of ferromagnetic Ising models. First, some basic methodological aspects of these simulations are briefly summarized (single-spin flip vs. cluster algorithms, finite-size scaling concepts), and then the application of these techniques to the nearest-neighbor Ising model in d=3 and 5 dimensions is described, and a detailed comparison to theoretical predictions is made. In addition, the case of Ising models with a large but finite range of interaction and the crossover scaling from mean-field behavior to the Ising universality class are treated. If one c…

PhysicsPhase transitionCritical phenomenaMonte Carlo methodGeneral Physics and AstronomySquare-lattice Ising modelIsing modelStatistical physicsRenormalization groupCritical exponentScalingPhysics Reports
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Multicanonical multigrid Monte Carlo method.

1994

To further improve the performance of Monte Carlo simulations of first-order phase transitions we propose to combine the multicanonical approach with multigrid techniques. We report tests of this proposition for the d-dimensional ${\mathrm{\ensuremath{\Phi}}}^{4}$ field theory in two different situations. First, we study quantum tunneling for d=1 in the continuum limit, and second, we investigate first-order phase transitions for d=2 in the infinite volume limit. Compared with standard multicanonical simulations we obtain improvement factors of several, and of about one order of magnitude, respectively.

PhysicsPhase transitionMultigrid methodCritical phenomenaMonte Carlo methodLattice field theoryWang and Landau algorithmLimit (mathematics)Continuum (set theory)Statistical physicsPhysical review. E, Statistical physics, plasmas, fluids, and related interdisciplinary topics
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Recent Developments in Monte-Carlo Simulations of First-Order Phase Transitions

1994

In the past few years considerable progress has been made in Monte Carlo simulations of first-order phase transitions and in the analysis of the resulting finite-size data. In this paper special emphasis will be placed on multicanonical simulations using multigrid update techniques, on numerical estimates of interface tensions, and on accurate methods for determining the transition point and latent heat.

PhysicsPhase transitionMultigrid methodTransition pointLattice gauge theoryLatent heatMonte Carlo methodDynamic Monte Carlo methodStatistical physicsFirst order
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Multibondic cluster algorithm for Monte Carlo simulations of first-order phase transitions.

1995

Inspired by the multicanonical approach to simulations of first-order phase transitions we propose for $q$-state Potts models a combination of cluster updates with reweighting of the bond configurations in the Fortuin-Kastelein-Swendsen-Wang representation of this model. Numerical tests for the two-dimensional models with $q=7, 10$ and $20$ show that the autocorrelation times of this algorithm grow with the system size $V$ as $\tau \propto V^\alpha$, where the exponent takes the optimal random walk value of $\alpha \approx 1$.

PhysicsPhase transitionNumerical analysisHigh Energy Physics::LatticeMonte Carlo methodHigh Energy Physics - Lattice (hep-lat)Condensed Matter (cond-mat)General Physics and AstronomyFOS: Physical sciencesCondensed MatterApproxRandom walkHigh Energy Physics - LatticeLattice gauge theoryCluster (physics)ExponentStatistical physicsPhysical review letters
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Effective Field Theories in a Finite Volume

2018

In this talk I present the formalism we have used to analyze Lattice data on two meson systems by means of effective field theories. In particular I present the results obtained from a reanalysis of the lattice data on the $KD^{(*)}$ systems, where the states $D^*_{s0}(2317)$ and $D^*_{s1}(2460)$ are found as bound states of $KD$ and $KD^*$, respectively. We confirm the presence of such states in the lattice data and determine the contribution of the $KD$ channel in the wave function of $D^*_{s0}(2317)$ and that of $KD^*$ in the wave function of $D^*_{s1}(2460)$. Our findings indicate a large meson-meson component in the two cases.

PhysicsQuantum chromodynamicsFinite volume methodMeson010308 nuclear & particles physicsHigh Energy Physics::LatticeHigh Energy Physics - Lattice (hep-lat)Lattice field theoryFOS: Physical sciences01 natural sciencesAtomic and Molecular Physics and OpticsHigh Energy Physics - PhenomenologyHigh Energy Physics - LatticeHigh Energy Physics - Phenomenology (hep-ph)Lattice (order)0103 physical sciencesBound stateEffective field theory010306 general physicsWave functionMathematical physicsFew-Body Systems
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