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A novel approach to confront electroweak data and theory

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Abstract
A novel approach to study electroweak physics at one-loop level in generic SU(2)L×U(1)Y theories is introduced. It separates the 1-loop corrections into two pieces: process specific ones from vertex and box contributions, and universal ones from contributions to the gauge boson propagators. The latter are parametrized in terms of four effective form factors $$\bar e^2 (q^2 ), \bar s^2 (q^2 ), \bar g_Z^2 (q^2 )$$ and $$\bar g_W^2 (q^2 )$$ corresponding to the γγ, γZ,ZZ andWW propagators. Under the assumption that only the Standard Model contributes to the process specific corrections, the magnitudes of the four form factors are determined atq 2=0 and atq 2=m 2 by fitting to all available precision experiments. These values are then compared systematically with predictions of SU(2)L×U(1)Y theories. In all fits α s (m Z ) and $$\bar \alpha (m_Z^2 )$$ are treated as external parameters in order to keep the interpretation as flexible as possible. The treatment of the electroweak data is presented in detail together with the relevant theoretical formulae used to interpret the data. No deviation from the Standard Model has been identified. Ranges of the top quark and Higgs boson masses are derived as functions of α s (m Z ) and $$\bar \alpha (m_Z^2 )$$ . Also discussed are consequences of the recent precision measurement of the left-right asymmetry at SLC as well as the impact of a top quark mass and an improvedW mass measurement.

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The electroweak fit of the standard model after the discovery of a new boson at the LHC

TL;DR: In view of the discovery of a new boson by the ATLAS and CMS Collaborations at the LHC, this paper presented an update of the global Standard Model (SM) fit to electroweak precision data.
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Flavor physics of leptons and dipole moments

Martti Raidal, +96 more
TL;DR: In this article, the authors discuss the theoretical, phenomenological and experimental issues related to flavor phenomena in the charged lepton sector and in flavor conserving CP-violating processes.
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Neutrino electromagnetic interactions: A window to new physics

TL;DR: In this article, a review of the state of the art in the study of neutrino interactions with electromagnetic fields is presented, as well as possible measurements of their static properties as test of new physics.
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Status of the Higgs singlet extension of the standard model after LHC run 1

TL;DR: In this paper, the current status of theoretical and experimental constraints on the real Higgs singlet extension of the standard model is discussed and the impact of perturbative unitarity, electroweak precision data with a special focus on higher-order contributions to the Higgs boson mass, perturbativity of the couplings as well as vacuum stability.
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Pinch Technique: Theory and Applications

TL;DR: In this paper, the theoretical foundations and most important physical applications of the Pinch Technique (PT) are reviewed, including the definition of gauge-independent off-shell formfactors, the construction of non-Abelian effective charges, the gauge-invariant treatment of resonant transition amplitudes and unstable particles and dynamical generation of an effective gluon mass.
References
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Journal ArticleDOI

One-loop corrections for e + e - annihilation into μ + μ - in the Weinberg model

TL;DR: In this article, the e + e − → μ + μ − cross section including all the one-loop radiative corrections in the context of the Weinberg model is presented.
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New constraint on a strongly interacting Higgs sector

TL;DR: It is shown that an integral {ital S} over the spectral function of spin-1 states of the Higgs sector is constrained by precision weak-interaction measurements.
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Scalar One Loop Integrals

TL;DR: In this article, the general one-loop scalar scalar one-, two-, three-and four-point functions are studied and an integral occurring in connection with soft bremsstrahlung is considered.
Journal ArticleDOI

The gell-mann-low function of QCD in the three-loop approximation

TL;DR: An analytic calculation of the Gell-Mann-low function and anomalous dimensions for non-Abelian gauge theory with fermions is presented in this article, where the authors show that it is possible to obtain an anomalous dimension for fermians.
Journal ArticleDOI

Probing the desert using gauge coupling unification

TL;DR: In this article, the authors present analytic one-loop expressions for sin 2 θ w, the unification scale M x, and the coupling at the unification level α (M x ), in supersymmetric grand-unified models with arbitrary intermediate scales.
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