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Quark Mass Anomalous Dimension to alpha_s**4

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TLDR
In this paper, the authors present the results of analytic calculation of the quark mass anomalous dimension to alpha_s**4, where alpha is the number of particles in a quark.
Abstract
We present the results of analytic calculation of the quark mass anomalous dimension to alpha_s**4.

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The anatomy of electroweak symmetry breaking: Tome I: The Higgs boson in the Standard Model

TL;DR: In this paper, the authors focused on the mechanism of electroweak symmetry breaking and the fundamental properties of the Higgs particle of the Standard Model and its decay modes and production mechanisms at hadron colliders and at future lepton colliders.
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RunDec: A Mathematica package for running and decoupling of the strong coupling and quark masses

TL;DR: In this article, the formulae are collected which are needed for the computation of the strong coupling constant and quark masses at different energy scales and for different number of active flavors.
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Physics of leptoquarks in precision experiments and at particle colliders

TL;DR: In this article, a comprehensive review of physics effects generated by leptoquarks (LQs), i.e., hypothetical particles that can turn quarks into leptons and vice versa, of either scalar or vector nature, is presented.
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Non-perturbative quark mass renormalization in quenched lattice QCD

TL;DR: In this paper, the renormalization factor relating the bare to the group invariant quark masses is accurately calculated in quenched lattice QCD using a recursive finite-size technique.
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Cold quark matter

TL;DR: In this article, a perturbative calculation of the equation of state of cold but dense QCD matter with two massless and one massive quark flavor was performed, and it was shown that perturbation theory converges reasonably well for quark chemical potentials above 1 GeV.
References
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Journal ArticleDOI

Integration by parts: The algorithm to calculate β-functions in 4 loops

TL;DR: In this paper, it was proved that the counterterm for an arbitrary 4-loop Feynman diagram in an arbitrary model is calculable within the minimal subtraction scheme in terms of rational numbers and the Riemann ζ-function in a finite number of steps via a systematic "algebraic" procedure involving neither integration of elementary, special, or any other functions, nor expansions in and summation of infinite series of any kind.
Journal ArticleDOI

Automatic Feynman graph generation

TL;DR: A general method is devised for the automatic generation of Feynman diagrams in gauge (and other) field theories and the performance of an implemented computer program is described.
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A theorem on analytical calculability of 4-loop renormalization group functions

TL;DR: In this article, a method of evaluating massless propagator-type Feynman integrals is presented, which guarantees that the counterterm of an arbitrary 4-loop diagram can be calculated analytically within the minimal substraction scheme.
Journal ArticleDOI

Dimensional regularization and the renormalization group

TL;DR: In this article, the behavior of a renormalized field theory under scale transformations x → λx; p → p/λ can be found in a simple way when the theory is regularized by the continuous dimension method.
Journal ArticleDOI

Deep-inelastic scattering beyond the leading order in asymptotically free gauge theories

TL;DR: In this article, the authors calculate the full order${g}^{2}$ corrections to the coefficient functions which determine the dependence of the moments of deep-inelastic structure functions.
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