3,663 research outputs found

    Factorization, Power Corrections, and the Pion Form Factor

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    This letter is an investigation of the pion form factor utilizing recently developed effective field theory techniques. The primary results reported are: Both the transition and electromagnetic form factors are corrected at order Λ/Q\Lambda/Q. However, these corrections only arise due to time ordered products which are sensitive to soft components of the pion. The usual higher twist wave function corrections contribute only at order Λ2/Q2\Lambda^2/Q^2, when the quark mass vanishes. In the case of the electromagnetic form factor the Λ/Q\Lambda/Q power correction is enhanced by a power of 1/αs(Q)1/\alpha_s(Q) relative to the leading order result of Brodsky and Lepage, if the scale ΛQ\sqrt{\Lambda Q} is non-perturbative. This enhanced correction could explain the discrepancy with the data.Comment: Published, extended, versio

    Comment on "The Phenomenology of a Nonstandard Higgs Boson in W_L W_L Scattering"

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    We show that in Composite Higgs models, the coupling of the Higgs resonance to a pair of WW bosons is weaker than the corresponding Standard Model coupling, provided the Higgs arises from electroweak doublets only. This is partly due to the effects of the nonlinear realization of the chiral symmetries at the compositeness scale.Comment: 6 pages, BU-HEP 94-2

    Unparticle physics at hadron collider via dilepton production

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    The scale invariant unparticle physics recently proposed by Georgi could manifest at low energies as non integral number d_U of invisible particles. Unparticles if existing, could couple to the Standard Model fields and consequently affect the collider phenomenology. We consider the DY process to explore effects of the peculiar propagator of the scalar and tensor unparticle operators. To probe these effects at hadron collider one needs to go beyond LO in QCD and hence the quantitative impact of QCD corrections for unparticle physics at LHC is investigated. We present the K-factors at LHC. Inclusion of QCD corrections to NLO stabilises the cross section with respect to scale variations.Comment: 11 pages, 9 figures, version to appear in Phys. Lett.

    The possibility of use of solar energy in the southeastern part of Western Siberia

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    The article presents the results of a study of the regime of solar radiation in the southeastern part of Western Siberia. To characterize the regime of solar radiation, long-term observational data on actinometrical and meteorological stations were used. The dependence of the total annual global radiation on latitude received. The dependence of the sunshine duration on latitude it gives. The potential amount of total solar radiation per year under average conditions cloud cover and atmospheric transparency considered. Common regularities of solar radiation arriving to the slopes of varying steepness and exposure can be distinguished in mountainous areas. On the basis of the potential arriving of the total solar radiation in the southern part of Western Siberia we can distinguish three latitude zones

    QCD Mass Inequalities in the Heavy Quark Limit

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    QCD inequalities are derived for the masses of mesons and baryons containing a single heavy quark using the heavy quark effective field theory. A rigorous lower bound is obtained for the Λˉ\bar\Lambda parameters of the heavy quark effective theory that parameterize 1/m1/m corrections, Λˉ\bar\Lambda > 237 MeV for mesons, and Λˉ>657\bar \Lambda > 657 MeV for baryons. The inequalities on Λˉ\bar\Lambda imply the inequalities mc<1627m_c < 1627 MeV and mb<5068m_b < 5068 MeV for the mass parameters of the heavy quark effective field theory.Comment: 10 pages, 0 figures, uses harvma

    Baryons Containing a Heavy Quark as Solitons

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    The possibility of interpreting baryons containing a single heavy quark as bound states of solitons (that arise in the nonlinear sigma model) and heavy mesons is explored. Particular attention is paid to the parity of the bound states and to the role of heavy quark symmetry.Comment: 15 pages, uses phyzzx.tex and tables.tex, REVISED VERSION: Some of the results have changed because of a crucial minus sign, CALT-68-1783 and UCSD/PTH 92-1

    Polysemy in Design Review Conversations

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    This paper examines the role of polysemy, defined as the quality of having multiple meanings, in design review conversations. It examines the polysemy, particularly of nouns, involved in a dataset of design review conversations with reference to design ideas. The purpose is to determine whether polysemy is related to successful development of design ideas and more creative design outcomes. The results show that the polysemy of nouns involved in the conversations of the finally developed, successful, design ideas exceeds in the most cases the average polysemy involved in the conversations pertaining to the unsuccessful design ideas. Furthermore, the polysemy of these nouns is linked to high overall creativity of the design idea. The paper concludes by discussing issues and directions for further investigation of polysem

    Renormalization of initial conditions and the trans-Planckian problem of inflation

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    Understanding how a field theory propagates the information contained in a given initial state is essential for quantifying the sensitivity of the cosmic microwave background to physics above the Hubble scale during inflation. Here we examine the renormalization of a scalar theory with nontrivial initial conditions in the simpler setting of flat space. The renormalization of the bulk theory proceeds exactly as for the standard vacuum state. However, the short distance features of the initial conditions can introduce new divergences which are confined to the surface on which the initial conditions are imposed. We show how the addition of boundary counterterms removes these divergences and induces a renormalization group flow in the space of initial conditions.Comment: 22 pages, 4 eps figures, uses RevTe
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