0000000000241223

AUTHOR

Colin Morningstar

showing 9 related works from this author

Determination of s - and p -wave I  = 1/2 Kπ scattering amplitudes in N f  = 2 + 1 lattice QCD

2018

Nuclear physics 932, 29 - 51 (2018). doi:10.1016/j.nuclphysb.2018.05.008

Quantum chromodynamicsPhysicsNuclear and High Energy Physics010308 nuclear & particles physicsHigh Energy Physics::LatticeLattice QCDFermion01 natural sciences530Scattering amplitudeAmplitude0103 physical sciencesS-wavelcsh:QC770-798lcsh:Nuclear and particle physics. Atomic energy. Radioactivityddc:530Gauge theoryAtomic physics010306 general physicsMixing (physics)
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String breaking by light and strange quarks in QCD

2019

The energy spectrum of a system containing a static quark anti-quark pair is computed for a wide range of source separations using lattice QCD with $N_\mathrm{f}=2+1$ dynamical flavours. By employing a variational method with a basis including operators resembling both the gluon string and systems of two separated static mesons, the first three energy levels are determined up to and beyond the distance where it is energetically favourable for the vacuum to screen the static sources through light- or strange-quark pair creation, enabling both these screening phenomena to be observed. The separation dependence of the energy spectrum is reliably parameterised over this saturation region with a…

QuarkNuclear and High Energy PhysicsStrange quarkParticle physicsMesonHigh Energy Physics::LatticeNuclear TheoryFOS: Physical sciencesLattice QCD01 natural sciencesHigh Energy Physics - Phenomenology (hep-ph)High Energy Physics - LatticeHeavy quarks0103 physical sciences010306 general physicsNuclear ExperimentQuantum chromodynamicsPhysics010308 nuclear & particles physicsHigh Energy Physics - Lattice (hep-lat)High Energy Physics::PhenomenologyLattice QCDQuarkoniumString breakinglcsh:QC1-999GluonHigh Energy Physics - PhenomenologyPair productionHigh Energy Physics::Experimentlcsh:PhysicsPhysics Letters
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Estimating the two-particle $K$-matrix for multiple partial waves and decay channels from finite-volume energies

2017

An implementation of estimating the two-to-two $K$-matrix from finite-volume energies based on the L\"uscher formalism and involving a Hermitian matrix known as the "box matrix" is described. The method includes higher partial waves and multiple decay channels. Two fitting procedures for estimating the $K$-matrix parameters, which properly incorporate all statistical covariances, are discussed. Formulas and software for handling total spins up to $S=2$ and orbital angular momenta up to $L=6$ are obtained for total momenta in several directions. First tests involving $\rho$-meson decay to two pions include the $L=3$ and $L=5$ partial waves, and the contributions from these higher waves are f…

Elastic scatteringPhysicsNuclear and High Energy PhysicsAngular momentumFinite volume methodSpins010308 nuclear & particles physicsHigh Energy Physics - Lattice (hep-lat)Elastic energyhep-latFOS: Physical sciencesCovariance01 natural sciencesHermitian matrixHigh Energy Physics - LatticeClassical mechanicsPionQuantum electrodynamics0103 physical scienceslcsh:QC770-798lcsh:Nuclear and particle physics. Atomic energy. Radioactivity010306 general physics
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Issues and Opportunities in Exotic Hadrons

2016

The last few years have been witness to a proliferation of new results concerning heavy exotic hadrons. Experimentally, many new signals have been discovered that could be pointing towards the existence of tetraquarks, pentaquarks, and other exotic configurations of quarks and gluons. Theoretically, advances in lattice field theory techniques place us at the cusp of understanding complex coupled-channel phenomena, modelling grows more sophisticated, and effective field theories are being applied to an ever greater range of situations. It is thus an opportune time to evaluate the status of the field. In the following, a series of high priority experimental and theoretical issues concerning h…

Nuclear and High Energy PhysicsParticle physicsField (physics)Lattice field theoryhep-latFOS: Physical sciencesAtomic01 natural sciencesComputer Science::Digital Libraries530Particle and Plasma PhysicsHigh Energy Physics - LatticeHigh Energy Physics - Phenomenology (hep-ph)0103 physical sciencesNuclearddc:530010306 general physicsNuclear ExperimentInstrumentationPhysics010308 nuclear & particles physics[PHYS.HLAT]Physics [physics]/High Energy Physics - Lattice [hep-lat]High Energy Physics::PhenomenologyHigh Energy Physics - Lattice (hep-lat)Molecularhep-phAstronomy and AstrophysicsExotic hadronNuclear & Particles PhysicsHigh Energy Physics - Phenomenology[PHYS.HPHE]Physics [physics]/High Energy Physics - Phenomenology [hep-ph]Quark–gluon plasmaHigh Energy Physics::Experiment
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Multi-hadron spectroscopy in a large physical volume

2017

We demonstrate the efficacy of the stochastic LapH method to treat all-to-all quark propagation on a $N_f = 2+1$ CLS ensemble with large linear spatial extent $L = 5.5$ fm, allowing us to obtain the benchmark elastic isovector p-wave pion-pion scattering amplitude to good precision already on a relatively small number of gauge configurations. These results hold promise for multi-hadron spectroscopy at close-to-physical pion mass with exponential finite-volume effects under control.

PhysicsQuarkParticle physicsIsovector010308 nuclear & particles physicsPhysicsQC1-999High Energy Physics::LatticeComputer Science::Information RetrievalHigh Energy Physics - Lattice (hep-lat)Nuclear TheoryFOS: Physical sciencesGauge (firearms)01 natural sciencesExponential functionScattering amplitudeHigh Energy Physics - LatticePionHadron spectroscopy0103 physical sciencesHigh Energy Physics::ExperimentNuclear Experiment010306 general physicsSpectroscopyEPJ Web of Conferences
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The $I=1$ pion-pion scattering amplitude and timelike pion form factor from $N_{\rm f} = 2+1$ lattice QCD

2019

The elastic $I=1$ $p$-wave $\pi\pi$ scattering amplitude is calculated together with the isovector timelike pion form factor using lattice QCD with $N_{\rm f}=2+1$ dynamical quark flavors. Wilson clover ensembles generated by the Coordinated Lattice Simulations (CLS) initiative are employed at four lattice spacings down to $a = 0.05\,\mathrm{fm}$, several pion masses down to $m_{\pi} = 200\,\mathrm{MeV}$, and spatial volumes of extent $L = 3.1-5.5\,\mathrm{fm}$. The set of measurements on these ensembles, which is publicly available, enables an investigation of systematic errors due to the finite lattice spacing and spatial volume. The $\pi\pi$ scattering amplitude is fit on each ensemble b…

PhysicsQuarkNuclear and High Energy PhysicsParticle physicsIsovector010308 nuclear & particles physicsHigh Energy Physics::LatticeHigh Energy Physics - Lattice (hep-lat)FOS: Physical sciencesLattice QCD01 natural sciencesScattering amplitudeHigh Energy Physics - PhenomenologyLattice constantPionHigh Energy Physics - LatticeHigh Energy Physics - Phenomenology (hep-ph)Dispersion relationLattice (order)0103 physical scienceslcsh:QC770-798lcsh:Nuclear and particle physics. Atomic energy. RadioactivityHigh Energy Physics::Experiment010306 general physics
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Including Tetraquark Operators in the Low-Lying Scalar Meson Sectors in Lattice QCD

2019

Lattice QCD allows us to probe the low-lying hadron spectrum in finite-volume using a basis of single- and multi-hadron interpolating operators. Here we examine the effect of including tetraquark operators on the spectrum in the scalar meson sectors containing the $K_0^*(700)$ ($\kappa$) and the $a_0(980)$ in $N_f = 2 + 1$ QCD, with $m_\pi \approx 230$ MeV. Preliminary results of additional finite-volume states found using tetraquark operators are shown, and possible implications of these states are discussed.

PhysicsQuantum chromodynamicsParticle physicsBasis (linear algebra)High Energy Physics::LatticeHigh Energy Physics - Lattice (hep-lat)Spectrum (functional analysis)HadronHigh Energy Physics::PhenomenologyFOS: Physical sciencesLattice QCDApproxHigh Energy Physics - LatticeTetraquarkHigh Energy Physics::ExperimentScalar meson
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Scattering from finite-volume energies including higher partial waves and multiple decay channels

2018

A new implementation of estimating the two-to-two $K$-matrix from finite-volume energies based on the Luescher formalism is described. The method includes higher partial waves and multiple decay channels, and the fitting procedure properly includes all covariances and statistical uncertainties. The method is also simpler than previously used procedures. Formulas and software for handling total spins up to $S=2$ and orbital angular momenta up to $L=6$ are presented.

PhysicsFinite volume methodSpins010308 nuclear & particles physicsScatteringComputer Science::Information RetrievalPhysicsQC1-999High Energy Physics - Lattice (hep-lat)FOS: Physical sciences01 natural sciencesComputational physicsMatrix (mathematics)High Energy Physics - Lattice0103 physical sciences010306 general physicsEPJ Web of Conferences
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Elastic I=3/2 p -wave nucleon-pion scattering amplitude and the Δ(1232) resonance from Nf=2+1 lattice QCD

2018

We present the first direct determination of meson-baryon resonance parameters from a scattering amplitude calculated using lattice QCD. In particular, we calculate the elastic $I=3/2$, $p$-wave nucleon-pion amplitude on a single ensemble of ${N}_{\mathrm{f}}=2+1$ Wilson-clover fermions with ${m}_{\ensuremath{\pi}}=280\text{ }\text{ }\mathrm{MeV}$ and ${m}_{K}=460\text{ }\text{ }\mathrm{MeV}$. At these quark masses, the $\mathrm{\ensuremath{\Delta}}(1232)$ resonance pole is found close to the $N\ensuremath{-}\ensuremath{\pi}$ threshold and a Breit-Wigner fit to the amplitude gives ${g}_{\mathrm{\ensuremath{\Delta}}N\ensuremath{\pi}}^{\mathrm{BW}}=19.0(4.7)$ in agreement with phenomenologica…

PhysicsQuantum chromodynamicsParticle physics010308 nuclear & particles physicsHigh Energy Physics::LatticeNuclear TheoryLattice field theoryResonanceFermionLattice QCD01 natural sciencesScattering amplitudePion0103 physical sciences010306 general physicsNucleonPhysical Review D
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