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B Meson Semileptonic Form Factors Using Unquenched Lattice QCD

B Meson Semileptonic Form Factors Using Unquenched Lattice QCD
Author: Emel Gulez
Publisher:
Total Pages: 116
Release: 2006
Genre: B mesons
ISBN:

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Abstract: We present state-of-the-art unquenched lattice QCD results for B meson semileptonic decay, B [rightarrow] [pi]lv, form factors. We use gauge configurations prepared by the MILC collaboration, which include the effects of the sea quarks, the s quark and two very light quarks (u and d). We employ the nonrelativistic NRQCD action to simulate the heavy b quark and a highly improved staggered quark action (AsqTad) to simulate the sea and valence light quarks. To reduce the uncertainties, we perform matching of the heavy-light current with these highly improved actions through one loop. The perturbative matching accounts for the effects of mixing with dimension 4 operators that are O(1/M) and O(a). We extrapolate the form factors f+(q2) and f0(q2) to their values at the physical pion mass using chiral perturbation theory formulas. Integrating this result, we obtain [integral] [from] 16 GeV2 [to] q2_max [d[gamma]/dq2]d2 (V_ub)2 = 1.46(35) ps−1. Combining this with a preliminary average by the Heavy Flavor Averaging Group (HFAG'05) of recent branching fraction data for exclusive B semileptonic decays from the BaBar, Belle and CLEO collaborations, leads to V_ub = 4.22(30)(51) x 10−3.


B → K*μ+μ- and Form Factors for Semi-leptonic and Radiative B Decays

B → K*μ+μ- and Form Factors for Semi-leptonic and Radiative B Decays
Author: Aoife Katy Manek Bharucha
Publisher:
Total Pages:
Release: 2010
Genre:
ISBN:

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The hadronic environment of the LHC favours the study of exclusive modes, and of these semi-leptonic and radiative B decays will play a leading role in the search for new physics (NP). A prime example is the rare decay B?K?(? K?)?+??, where the many measurable quantities offer important new tests of the Standard Model and its extensions. We de?ne sets of CP-conserving and CP-violating observables which are studied in terms of the full form factors, calculated in QCD sum rules on the light-cone (LCSR), and QCD factorisation. Those with reduced dependence on hadronic quantities and sensitivity to NP are identi?ed. In the ?rst few years of data?taking at the LHC, the focus will be on quantities which are simple to extract while maximising the available NP sensitivity. Out of three such observables, two are well known to the experimental community. However a third, one of the CP-conserving angular observables, leads to signi?cant additional constraints on parameter space. We then study form factors for rare semi-leptonic and radiative B decays to K(?) , ? and ?s mesons, combining theoretical and phenomenological constraints from Lattice QCD, LCSR, and dispersive bounds. We pay particular attention to form factor parameterisations which are based on the so-called series expansion, and study the related systematic uncertainties on a quantitative level. Finally we calculate the leading-twist O(?s?0) corrections to the B ? ? transition form factor f+ (0) in LCSR, allowing an improved determination of the CKM matrix element |Vub |.


Particle Physics Phenomenology - Proceedings Of The Third International Workshop

Particle Physics Phenomenology - Proceedings Of The Third International Workshop
Author: D Chang
Publisher: World Scientific
Total Pages: 294
Release: 1997-06-16
Genre:
ISBN: 9814546089

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At this workshop, there are two pedagogical lectures on heavy quark effective theory and heavy quarkonium, given by B Grinstein and E Braaten. This is followed by eighteen talks addressing recent experimental and theoretical developments on a variety of topics. They include applications of heavy quark effective theory, heavy ion physics, CP violation in kaon and bottom mesons, implications of Higgs particle discovery, rare decays of kaons and pions, and new physics beyond the standard model.


Bπ Excited State Contamination in B Meson Observables Obtained from Lattice QCD

Bπ Excited State Contamination in B Meson Observables Obtained from Lattice QCD
Author: Alexander Broll
Publisher:
Total Pages: 0
Release: 2023*
Genre:
ISBN:

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Englische Version: Lattice simulations of Quantum Chromodynamics allow for a fully non-perturbative computation of hadronic correlation functions, but for a reliable extraction of physical quantities such as particle energies and matrix elements the contribution of excited states needs to be under control. In this thesis, an effective field theory known as Heavy Meson Chiral Perturbation Theory (HM ChPT) is used to analytically compute the dominant excited states contamination of B meson correlators which are relevant for the extraction of CKM matrix elements. First, the analogues of the quark bilinears which are used as interpolating fields in lattice simulations are derived in HM ChPT. These depend on a set of low energy constants (LECs) which are known for local fields. On the other hand, smeared interpolating fields can be incorporated in the effective theory by changing the values of these LECs, a fact that will be used throughout this thesis for investigating the effect of smearing. The interpolating fields are used to compute the B meson two-point function from which the B meson mass and decay constant as well as the respective excited states contamination can be extracted. From suitably chosen ratios of three-point functions and two-point functions, the HM ChPT LEC g, the form factors of semileptonic B meson decay, and the matrix elements of neutral B meson oscillations were determined. The computed excited states contamination of these ratios usually leads to an overestimation of the order of a few percent, depending on the values chosen for the LECs. Some results depend on so far unknown LECs, for which suitable correlation functions for a lattice determination are presented. In contrast, the excited states contamination of one of the semileptonic form factors is an order of magnitude larger and negative.


Hadron Form Factors

Hadron Form Factors
Author: Alexander Khodjamirian
Publisher: CRC Press
Total Pages: 203
Release: 2020-03-13
Genre: Science
ISBN: 1351392972

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This book introduces the phenomenology and theory of hadron form factors in a consistent manner, deriving step-by-step the key equations, defining the form factors from the matrix elements of hadronic transitions and deriving their symmetry relations. Explained are several general concepts of particle theory and phenomenology exemplified by hadron form factors. The main emphasis here is on learning the analytical methods in particle phenomenology. Many examples of hadronic processes involving form factors are considered, from the pion electromagnetic scattering to heavy B-meson decays. In the second part of the book, modern techniques of the form factor calculation, based on the method of sum rules in the theory of strong interactions, quantum chromodynamics, are introduced in an accessible manner. This book will be a useful guide for graduate students and early-career researchers working in the field of particle phenomenology and experiments. Features: • The first book to address the phenomenology of hadron form factors at a pedagogical level in one coherent volume • Contains up-to-date descriptions of the most important form factors of the electroweak transitions investigated in particle physics experiments


Particle Physics Phenomenology, 5th Intl Workshop

Particle Physics Phenomenology, 5th Intl Workshop
Author: Hsiang-nan Li
Publisher: World Scientific
Total Pages: 250
Release: 2001-04-24
Genre: Science
ISBN: 9814490873

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In this volume, recent theoretical and experimental progress in QCD phenomenology, neutrino physics, B physics and CP violation is reviewed.