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相关论文: The Heavy Quark Self-Energy in Nonrelativistic Lat…

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Progress in the improvement program in nonrelativistic lattice QCD is outlined. The leading radiative corrections to the heavy-quark mass renormalization, energy shift, and two important kinetic coupling coefficients are presented. The…

高能物理 - 格点 · 物理学 2010-11-01 Colin J. Morningstar

The heavy-quark mass and wave function renormalizations, energy shift, and radiative corrections to two important couplings, the so-called kinetic couplings, in nonrelativistic lattice QCD are determined to leading order in tadpole-improved…

高能物理 - 格点 · 物理学 2010-11-01 Colin J. Morningstar

We present a calculation of the heavy quark's self energy in moving NRQCD to one-loop in perturbation theory. Results for the energy shift and external momentum renormalisation are discussed and compared with non-perturbative results. We…

高能物理 - 格点 · 物理学 2009-11-10 A. Dougall , C. T. H. Davies , K. M. Foley , G. P. Lepage

We construct an improved version of nonrelativistic QCD for use in lattice simulations of heavy quark physics, with the goal of reducing systematic errors from all sources to below 10\%. We develop power counting rules to assess the…

高能物理 - 格点 · 物理学 2010-11-01 G. P. Lepage , L. Magnea , C. Nakhleh , U. Magnea , K. Hornbostel

We review a relativistic approach to the heavy quark physics in lattice QCD by applying a relativistic $O(a)$ improvement to the massive Wilson quark action on the lattice. After explaining how power corrections of $m_Q a$ can be avoided…

高能物理 - 格点 · 物理学 2007-05-23 S. Aoki , Y. Kayaba , Y. Kuramashi , N. Yamada

Lattice QCD should allow quantitative predictions for the heavy quark physics from first principles. Up to now, however, most approaches have based on the nonrelativistic effective theory, with which the continuum limit can not be taken in…

高能物理 - 格点 · 物理学 2014-11-17 Sinya Aoki , Yoshinobu Kuramashi , Shin-ichi Tominaga

We study effective energies of heavy-light meson correlation functions in lattice QCD and a small volume of (0.2 fm)^4 to non-perturbatively calculate their dependence on the heavy quark mass in the continuum limit. Our quenched results…

高能物理 - 格点 · 物理学 2009-11-10 Jochen Heitger , Jan Wennekers

The temporal and spatial components of the heavy-light vector current and the spatial components of the axial current are expressed in terms of lattice-regulated operators suitable for simulations of B and D mesons. The currents are…

高能物理 - 格点 · 物理学 2009-10-31 Colin J. Morningstar , J. Shigemitsu

We address the perturbative renormalization of massive lattice fermions. We derive expressions-valid to all orders in perturbation theory and for all values of the bare fermion mass-for the rest mass, the kinetic mass, and the wave-function…

高能物理 - 格点 · 物理学 2010-11-19 Bartholomeus P. G. Mertens , Andreas S. Kronfeld , Aida X. El-Khadra

With Wilson quarks, on-shell O($a$) improvement of the lattice QCD action is achieved by including the Sheikholeslami-Wohlert term and two further operators of mass dimension 5, which amount to a mass-dependent rescaling of the bare…

高能物理 - 格点 · 物理学 2024-02-02 Mattia Dalla Brida , Roman Höllwieser , Francesco Knechtli , Tomasz Korzec , Stefan Sint , Rainer Sommer

Nonperturbative self-energy of a bound quark is computed gauge-invariantly in the framework of background perturbation theory. The resulting Delta m^2_q is negative and is a universal function of string tension and current quark mass. The…

高能物理 - 唯象学 · 物理学 2009-11-07 Yu. A. Simonov

We present a new determination of the $\bar b \bar b u d$ ($J^P=1^+$, $I=0$) tetraquark binding energy using lattice QCD with domain-wall light quarks and a nonperturbatively tuned three-parameter anisotropic-clover ``relativistic'' action…

高能物理 - 格点 · 物理学 2026-05-28 Jakob Hoffmann , Stefan Meinel

The quark contribution to the free energy of a hot quark-gluon plasma is calculated to leading order in hard-thermal-loop (HTL) perturbation theory. This method selectively resums higher order corrections associated with plasma effects,…

高能物理 - 唯象学 · 物理学 2009-10-31 Jens O. Andersen , Eric Braaten , Michael Strickland

Following the Non-Relativistic QCD approach we use a gauge invariant smearing method with factorization to measure the excitation energies for a heavy $Q\bar{Q}$ system on a $24^3\times 48$ lattice at $\beta=6.2$. The results come from…

高能物理 - 格点 · 物理学 2011-04-20 S. M. Catterall , F. R. Devlin , I. T. Drummond , R. R. Horgan

We improve the non-relativistic QCD (NRQCD) action by comparing the dispersion relation to that of the continuum through $\mathcal{O}(p^6)$ in perturbation theory. The one-loop matching coefficients of the $\mathcal{O}(p^4)$ kinetic…

I discuss a scheme to match perturbative and non-perturbative physics with power accuracy in the heavy-quark effective theory. I elaborate on two important aspects of the scheme: 1) a multi-loop subtraction of soft contributions from the…

高能物理 - 唯象学 · 物理学 2007-05-23 Xiangdong Ji

We demonstrate that to calculate the self-energy of a heavy quark in the heavy quark limit (or the heavy fermion limit in what is called the Baryon Chiral Perturbation Theory), the use of standard dimensional regularization provides only…

高能物理 - 唯象学 · 物理学 2010-11-01 M. A. Ivanov , T. Mizutani

We find the leading electroweak corrections to the Lagrangians of heavy-quark effective theory and nonrelativistic QCD. These corrections appear in the Wilson coefficients of the two- and four-quark operators and are considered here at…

高能物理 - 唯象学 · 物理学 2023-06-06 B. Assi , B. A. Kniehl , J. Soto

We present O(g^4) calculations of both planar and non-planar Wilson loops for various actions in the presence of sea quarks. In particular, the plaquette, the static potential and the static self energy are calculated to this order for…

高能物理 - 格点 · 物理学 2007-05-23 Gunnar S. Bali , Peter Boyle

We present a preliminary analysis of the heavy-heavy spectrum and heavy-light decay constants in full QCD, using a tadpole-improved SW quark action and an RG-improved gauge action on a 16^3 x 32 lattice with four sea quark masses…

高能物理 - 格点 · 物理学 2015-06-25 PACS Collaboration , S. Aoki et al
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