Light Hadron Spectrum, Quark Masses and Meson Decay Constants from Lattice QCD with O(a)-improved Dynamical Wilson Fermions

Light Hadron Spectrum, Quark Masses and Meson Decay Constants from Lattice QCD with O(a)-improved Dynamical Wilson Fermions PDF Author: Derek John Hepburn
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Light Hadron Spectrum, Quark Masses and Meson Decay Constants from Lattice QCD with O(a)-improved Dynamical Wilson Fermions

Light Hadron Spectrum, Quark Masses and Meson Decay Constants from Lattice QCD with O(a)-improved Dynamical Wilson Fermions PDF Author: Derek John Hepburn
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Languages : en
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Light Hadron Spectrum, Quark Masses and Meson Decay Constants from Lattice QCD with Wilson Fermions

Light Hadron Spectrum, Quark Masses and Meson Decay Constants from Lattice QCD with Wilson Fermions PDF Author: D. J. Hepburn
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Languages : en
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Charmed and Light Pseudoscalar Meson Decay Constants from Four-flavor Lattice QCD with Physical Light Quarks

Charmed and Light Pseudoscalar Meson Decay Constants from Four-flavor Lattice QCD with Physical Light Quarks PDF Author:
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Languages : en
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B-meson Decay Constants from 2+1-flavor Lattice QCD with Domain-wall Light Quarks and Relativistic Heavy Quarks

B-meson Decay Constants from 2+1-flavor Lattice QCD with Domain-wall Light Quarks and Relativistic Heavy Quarks PDF Author:
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Languages : en
Pages : 24

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We calculate the B-meson decay constants fB, fBs, and their ratio in unquenched lattice QCD using domain-wall light quarks and relativistic b-quarks. We use gauge-field ensembles generated by the RBC and UKQCD collaborations using the domain-wall fermion action and Iwasaki gauge action with three flavors of light dynamical quarks. We analyze data at two lattice spacings of a ≈ 0.11, 0.086 fm with unitary pion masses as light as M[pi] ≈ 290 MeV; this enables us to control the extrapolation to the physical light-quark masses and continuum. For the b-quarks we use the anisotropic clover action with the relativistic heavy-quark interpretation, such that discretization errors from the heavy-quark action are of the same size as from the light-quark sector. We renormalize the lattice heavy-light axial-vector current using a mostly nonperturbative method in which we compute the bulk of the matching factor nonperturbatively, with a small correction, that is close to unity, in lattice perturbation theory. We also improve the lattice heavy-light current through O([alpha]sa). We extrapolate our results to the physical light-quark masses and continuum using SU(2) heavy-meson chiral perturbation theory, and provide a complete systematic error budget. We obtain fB0 = 196.2(15.7) MeV, fB+ = 195.4(15.8) MeV, fBs = 235.4(12.2) MeV, fBs/fB0 = 1.193(59), and fBs/fB+ = 1.220(82), where the errors are statistical and total systematic added in quadrature. In addition, these results are in good agreement with other published results and provide an important independent cross check of other three-flavor determinations of B-meson decay constants using staggered light quarks.

B- and D-meson Decay Constants from Three-flavor Lattice QCD.

B- and D-meson Decay Constants from Three-flavor Lattice QCD. PDF Author:
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Languages : en
Pages : 63

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We calculate the leptonic decay constants of B_{(s)} and D_{(s)} mesons in lattice QCD using staggered light quarks and Fermilab bottom and charm quarks. We compute the heavy-light meson correlation functions on the MILC asqtad-improved staggered gauge configurations which include the effects of three light dynamical sea quarks. We simulate with several values of the light valence- and sea-quark masses (down to m̃_s/10) and at three lattice spacings (a ̃0.15, 0.12, and 0.09 fm) and extrapolate to the physical up and down quark masses and the continuum using expressions derived in heavy-light meson staggered chiral perturbation theory. We renormalize the heavy-light axial current using a mostly nonperturbative method such that only a small correction to unity must be computed in lattice perturbation theory and higher-order terms are expected to be small. We obtain f_{B+̂} = 196.9(8.9) MeV, f_{B_s} = 242.0(9.5) MeV, f_{D+̂} = 218.9(11.3) MeV, f_{D_s} = 260.1(10.8) MeV, and the SU(3) flavor-breaking ratios f_{B_s}/f_{B} = 1.229(26) and f_{D_s}/f_{D} = 1.188(25), where the numbers in parentheses are the total statistical and systematic uncertainties added in quadrature.

Hadron Spectrum, Quark Masses and Decay Constants from Light Overlap Fermions on Large Lattices

Hadron Spectrum, Quark Masses and Decay Constants from Light Overlap Fermions on Large Lattices PDF Author:
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Languages : en
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D(S) Spectrum and Leptonic Decays with Fermilab Heavy Quarks and Improved Staggered Light Quarks

D(S) Spectrum and Leptonic Decays with Fermilab Heavy Quarks and Improved Staggered Light Quarks PDF Author:
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Languages : en
Pages : 5

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We present preliminary results for the D{sub s} meson spectrum and decay constants in unquenched lattice QCD. Simulations are carried out with 2 + 1 dynamical quarks using gauge configurations generated by the MILC collaboration. We use the ''asqtad'' a2 improved staggered action for the light quarks, and the clover heavy quark action with the Fermilab interpretation. We compare our spectrum results with the newly discovered 0 and 1 states in the D{sub s} system.

Charmed and Light Pseudoscalar Meson Decay Constants from HISQ Simulations

Charmed and Light Pseudoscalar Meson Decay Constants from HISQ Simulations PDF Author:
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Languages : en
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We compute the leptonic decay constants $f_{D^+}$, $f_{D_s}$, and $f_{K^+}$, and the quark-mass ratios $m_c/m_s$ and $m_s/m_l$ in unquenched lattice QCD. We use the MILC highly improved staggered quark (HISQ) ensembles with four dynamical quark flavors. Our primary results are $f_{D^+} = 212.6(0.4)({}^{+1.0}_{-1.2})\ \mathrm{MeV}$, $f_{D_s} = 249.0(0.3)({}^{+1.1}_{-1.5})\ \mathrm{MeV}$, and $f_{D_s}/f_{D^+} = 1.1712(10)({}^{+29}_{-32})$, where the errors are statistical and total systematic, respectively. We also obtain $f_{K^+}/f_{\pi^+} = 1.1956(10)({}^{+26}_{-18})$, updating our previous result, and determine the quark-mass ratios $m_s/m_l = 27.35(5)({}^{+10}_{-7})$ and $m_c/m_s = 11.747(19)({}^{+59}_{-43})$. When combined with experimental measurements of the decay rates, our results lead to precise determinations of the CKM matrix elements $

Exploring Hadron Masses in Lattice QCD with Light Quarks and an Improved Fermion Action

Exploring Hadron Masses in Lattice QCD with Light Quarks and an Improved Fermion Action PDF Author: Ph. de Forcrand
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Languages : en
Pages : 13

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Scaling of Non-perturbatively O(a) Improved Wilson Fermions

Scaling of Non-perturbatively O(a) Improved Wilson Fermions PDF Author:
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Languages : en
Pages : 50

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