575 research outputs found

    Associated heavy quarks pair production with Higgs as a tool for a search for non-perturbative effects of the electroweak interaction at the LHC

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    Assuming an existence of an anomalous triple electro-weak bosons interaction being defined by coupling constant λ\lambda, we calculate its contribution to interactions of the Higgs with pairs of heavy particles. Bearing in mind experimental restrictions 0.011<λ<0.011-0.011 < \lambda < 0.011 we present results for possible effects in processes ppW+WH,ppW+ZH,ppWZH,pptˉtHp\,p \to W^+ W^- H,\,p\,p \to W^+ Z H,\,p\,p \to W^- Z H,\,p\,p \to \bar t t H , ppbˉbHp p \to \bar b b H. Effects could be significant with negative sign of λ\lambda in associated heavy quarks t,bt,\,b pairs production with the Higgs. In calculations we rely on results of the non-perturbative approach to a spontaneous generation of effective interactions, which defines the form-factor of the three-boson anomalous interaction.Comment: 6 pages, 2 figures, few typos corrected, references adde

    Analytic Invariant Charge in QCD

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    This paper gives an overview of recently developed model for the QCD analytic invariant charge. Its underlying idea is to bring the analyticity condition, which follows from the general principles of local Quantum Field Theory, in perturbative approach to renormalization group (RG) method. The concrete realization of the latter consists in explicit imposition of analyticity requirement on the perturbative expansion of β\beta function for the strong running coupling, with subsequent solution of the corresponding RG equation. In turn, this allows one to avoid the known difficulties originated in perturbative approximation of the RG functions. Ultimately, the proposed approach results in qualitatively new properties of the QCD invariant charge. The latter enables one to describe a wide range of the strong interaction processes both of perturbative and intrinsically nonperturbative nature.Comment: Invited review article; 46 pages, 14 EPS figure

    Radiative muon pair production in high energy electron-positron annihilation process

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    The lowest order radiative correction to the differential cross-section of process of muon pair production with emission of hard photon at high energy electron-positron annihilation are calculated. Taking into account the emission of additional soft and hard photon the cross-section can be put in the form of Drell-Yan process in leading logarithmical approximation. Applying the crossing transformation we obtain the cross section of radiative electron-muon high-energy scattering process. Virtual and soft photon emission contributions of non-leading form are tabulated for several typical kinematical points. The limit of small invariant mass of muon pair is in agreement with our previous analysis.Comment: 9 pages, 2 figure

    NJL interaction derived from QCD: vector and axial-vector mesons

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    In previous works effective non-local SU(2)×SU(2)SU(2)\times SU(2) NJL model was derived in the framework of the fundamental QCD. All the parameters of the model are expressed through QCD parameters: current light quark mass m0m_0 and average non-perturbative αs\alpha_s. The results for scalar and pseudo-scalar mesons are in satisfactory agreement to existing data. In the present work the same model without introduction of any additional parameters is applied for a description of masses and strong decay widths of ρ\rho- and a1a_1-mesons. The results for both scalar and vector sectors agree with data with only one adjusted parameter m0m_0, with account of average αs0.415\alpha_s \simeq 0.415, which is obtained in a previous work as well.Comment: 19 pages, 2 figures, 1 tabl

    Update of the e^+e^-\to\pi^+\pi^- cross section measured by SND detector in the energy region 400<\sqrt{s}<1000 MeV

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    The corrected cross section of the e^+e^-\to\pi^+\pi^- process measured in the SND experiment at the VEPP-2M e^+e^- collider is presented. The update is necessary due to a flaw in the e^+e^-\to\pi^+\pi^- and e^+e^-\to\mu^+\mu^- Monte Carlo events generators used previously in data analysis.Comment: 10 pages,7 figure
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