首页> 外文期刊>The journal of high energy physics >QED corrections in B ˉ K ˉ ? + ? ? documentclass[12pt]{minimal} usepackage{amsmath} usepackage{wasysym} usepackage{amsfonts} usepackage{amssymb} usepackage{amsbsy} usepackage{mathrsfs} usepackage{upgreek} setlength{oddsidemargin}{-69pt} egin{document}$$ overline{B}o overline{K}{mathrm{ell}}^{+}{mathrm{ell}}^{-} $$end{document} at the double-differential level
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QED corrections in B ˉ K ˉ ? + ? ? documentclass[12pt]{minimal} usepackage{amsmath} usepackage{wasysym} usepackage{amsfonts} usepackage{amssymb} usepackage{amsbsy} usepackage{mathrsfs} usepackage{upgreek} setlength{oddsidemargin}{-69pt} egin{document}$$ overline{B}o overline{K}{mathrm{ell}}^{+}{mathrm{ell}}^{-} $$end{document} at the double-differential level

机译:QED校正在<内联公式ID =“IEQ1”> <替代方案> b ˉ k < / mml:mi> ˉ + documentClass [12pt] {minimal} usepackage {ammath} usepackage {keysym} usepackage {amsfonts} usepackage { amssymb} usepackage {amsbsy} usepackage {mathrsfs} usepackage {supmeek} setLength { oddsidemargin} { - 69pt} begin {document} $$ overline {b} to overline {k} { mathrm { ell}} ^ {+} { mathrm { ell}} ^ { - } $$ end {document} 在双差分水平

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A bstract We present a detailed analysis of QED corrections to B ˉ → K ˉ ? + ? ? documentclass[12pt]{minimal} usepackage{amsmath} usepackage{wasysym} usepackage{amsfonts} usepackage{amssymb} usepackage{amsbsy} usepackage{mathrsfs} usepackage{upgreek} setlength{oddsidemargin}{-69pt} egin{document}$$ overline{B}o overline{K}{mathrm{ell}}^{+}{mathrm{ell}}^{-} $$end{document} decays at the double-differential level. Cancellations of soft and collinear divergences are demonstrated analytically using the phase space slicing method. Whereas soft divergences are found to cancel at the differential level, the cancellation of the hard-collinear logs ln m _( ? )require, besides photon-inclusiveness, a specific choice of kinematic variables. In particular, hard-collinear logs in the lepton-pair invariant mass distribution ( q ~(2)), are sizeable and need to be treated with care when comparing with experiment. Virtual and real amplitudes are evaluated using an effective mesonic Lagrangian. Crucially, we show that going beyond this approximation does not introduce any further infrared sensitive terms. All analytic computations are performed for generic charges and are therefore adaptable to semileptonic decays such as B ˉ → D ? ν ˉ documentclass[12pt]{minimal} usepackage{amsmath} usepackage{wasysym} usepackage{amsfonts} usepackage{amssymb} usepackage{amsbsy} usepackage{mathrsfs} usepackage{upgreek} setlength{oddsidemargin}{-69pt} egin{document}$$ overline{B}o Dmathrm{ell}overline{u } $$end{document} .
机译:Bstract我们对Q→kˉ进行了详细的QED校正分析+还是 DocumentClass [12pt] {minimal} usepackage {ammath} usepackage {keysym} usepackage {amsfonts} usepackage {amssysfs} usepackage {mathrsfs} usepackage {supmeek} setLength { oddsidemargin} { -69pt} begin {document} $$ overline {b} to overline {k} { mathrm { ell}} ^ {+} { mathrm { ell}} ^ { - } $$ end {Document}在双差分级别衰减。使用相位空间切片法在分析上进行了分析证明了柔软和线性分歧的取消。虽然发现软分流在差分水平下取消,但除了光子包裹性,除了光子夹杂物之外,还需要取消硬链接记录LN M _(α)。特别地,Lepton-leap-leap uniant配质量分布(q〜(2))中的硬链数是相当大的,并且在与实验相比时需要用小心进行处理。使用有效的Mesonic Lagrangian评估虚拟和实际幅度。至关重要的是,我们表明超越这种近似不会引入任何其他红外敏感术语。所有分析计算都针对通用电荷进行,因此适用于半剥皮衰减,例如B→D? νˉ documentClass [12pt] {minimal} usepackage {ammath} usepackage {isysym} usepackage {amsfonts} usepackage {amssys} usepackage {amsbsy} usepackage {mathrsfs} usepackage {supmeek} setLength { oddsidemargin } { - 69pt} begin {document} $$ overline {b} to d mathrm { ell} overline { nu} $$ end {document}。

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