The Pion Form Factor in Lattice QCD

The Pion Form Factor in Lattice QCD PDF Author: Draper, Terrence
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ISBN:
Category :
Languages : en
Pages : 12

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The Pion Form Factor in Lattice QCD

The Pion Form Factor in Lattice QCD PDF Author: Draper, Terrence
Publisher:
ISBN:
Category :
Languages : en
Pages : 12

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The Pion Form Factor from Lattice QCD

The Pion Form Factor from Lattice QCD PDF Author: Johannes van der Heide
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Category :
Languages : en
Pages : 0

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The Pion Form Factor from Lattice QCD with Two Dynamical Flavours

The Pion Form Factor from Lattice QCD with Two Dynamical Flavours PDF Author:
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Category :
Languages : en
Pages : 17

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The Pion Form Factor from Lattice QCD

The Pion Form Factor from Lattice QCD PDF Author: Johannes van der Heide
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ISBN:
Category :
Languages : en
Pages : 125

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Pion Form Factor in Lattice QCD with Light Pions

Pion Form Factor in Lattice QCD with Light Pions PDF Author:
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Category :
Languages : en
Pages :

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We present a recent calculation of the pion electromagnetic form factor in Lattice QCD with light (~300 MeV) dynamical pions. Our result is consistent with experimental data and the vector meson dominance (VMD) hypothesis up to momentum transfer of 4 GeV2.

The Pion Form Factor and Momentum and Angular Momentum Fractions of the Proton in Lattice QCD

The Pion Form Factor and Momentum and Angular Momentum Fractions of the Proton in Lattice QCD PDF Author: Gen Wang
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Category :
Languages : en
Pages : 90

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First Principles Calculations of Nucleon and Pion Form Factors

First Principles Calculations of Nucleon and Pion Form Factors PDF Author: Robert Edwards
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Category :
Languages : en
Pages :

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Lattice QCD is an essential complement to the current and anticipated DOE-supported experimental program in hadronic physics. In this poster we address several key questions central to our understanding of the building blocks of nuclear matter, nucleons and pions. Firstly, we describe progress at computing the electromagnetic form factors of the nucleon, describing the distribution of charge and current, before considering the role played by the strange quarks. We then describe the study of transition form factors to the Delta resonance. Finally, we present recent work to determine the pion form factor, complementary to the current JLab experimental determination and providing insight into the approach to asymptotic freedom.

Pion Structure Form Lattice QCD

Pion Structure Form Lattice QCD PDF Author:
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ISBN:
Category :
Languages : en
Pages : 113

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Lattice QCD at the Physical Point

Lattice QCD at the Physical Point PDF Author: Thibaut Métivet
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Category :
Languages : en
Pages : 0

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The formalism of Quantum Chromodynamics on the lattice (or Lattice QCD) allows to perform ab-initio non-perturbative studies of strong-interaction driven processes, as it provides both a covariant regularisation of the theory of QCD and a natural framework for numerical computations. In this work, after a review of the main features of QCD and a step-by-step presentation of our discretization of QCD on a lattice, we undertake detailed studies of two problems of hadronic physics: the phenomenon of resonant scattering and the structure of the nucleon. The lattice calculations are performed with the Budapest-Marseille-Wuppertal Collaboration's 2+1-flavour gauge configurations, which give access to a wide range of lattice spacings, volumes and quarks masses, thereby allowing to study the sensibility of our results on these parameters, and to perform a complete continuum extrapolation. These configurations include dynamical quarks, and use a clover-improved Wilson QCD action. To investigate the scattering of particles on the lattice, we set up a Lüscher analysis for the emblematic case of pion-pion scattering in the channel of the rho meson resonance. We analyse our data with a variational generalized eigenvalue method, and give an in-depth calculation of the scattering phase-shifts and the corresponding resonance parameters, with a full control of the systematic errors. Our results provide an important step for lattice studies of scattering states, as they are the first to be performed at the physical pion mass, where one can see the actual decay of the rho into two pions. The obtained rho meson parameters are in good agreement with the experimental values, and consistent with a weak pion mass dependence of the coupling between the rho and two pions. As for our probe of the structure of the nucleon, we present a complete extraction of the electroweak isovector form factors, with a comprehensive study of the electric charge squared radius and of the axial charge. Our analysis also feature data at the physical pion mass, which turns out to be crucial in order to perform safe extrapolations to the physical point, as the chiral perturbation theory predicts violent variations of these quantities near the massless-quarks point. Our calculation includes source and sink projections onto the nucleon state, as well as a combined fit method between the two-point and three-point correlation functions to control the contamination of our data by excited states. Although one would need more data to perform a high-accuracy determination of the nucleon radius and axial charge at the physical point with a relevant estimation of the systematic errors, the results we obtain are in good agreement with the experiment and suggest that the excited-state effects are under control. Our analysis also highlights that gauge configurations ensembles near the physical pion mass and with large volumes must be used in order to extract accurate information about the nucleon structure from lattice calculations.

A Lattice QCD Study of the Rho Resonance and the Timelike Pion Form Factor

A Lattice QCD Study of the Rho Resonance and the Timelike Pion Form Factor PDF Author: Felix Benjamin Erben
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Category :
Languages : en
Pages :

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