论文标题

重 +重和重型 +轻型伪尺度到矢量半衰减过渡

Heavy + heavy and heavy + light pseudoscalar to vector semileptonic transitions

论文作者

Xing, Hui-Yu, Xu, Zhen-Ni, Cui, Zhu-Fang, Roberts, Craig D., Xu, Chang

论文摘要

使用对称的矢量$ \ times $ vector触点互动(SCI)的对称性的正规化,我们完成了与矢量梅森最终状态的十二个半雌激素过渡的系统处理:$ d \ toρ$,$ d _ {(s s){(s s)} k^\ ast $,$ b _ {(s)} \ to d _ {(s)}^\ ast $,$ b_c \ to b _ {(s)}^\ ast,j/ar j/ψ,d^\ ast $;从而最终确定了重++重型+较重+伪伪内膜中的半衰减分析,以对伪遵循和媒介中的最终状态进行统一分析。该分析以代数简单性,很少的参数以及始终描述从Nambu-Goldstone模式到沉重+沉重的介体的系统的能力为标志。关于过渡形式因素的行为,SCI结果可以很好地比较在有声音实验或独立理论分析的任何地方进行比较;因此,SCI分支分数预测应该是合理的指南。考虑到比率$ r(d _ {(s)}^{(\ ast)})$,$ r(j/ψ)$,$ r(η_c)$,其值是弱交互中Lepton普遍性的关键测试,SCI值,SCI值,SCI值与标准模型预测一致。 $ b _ {(s)} \ to d _ {(s)}^\ ast $ transitions用于预测在重型限制中演变为通用iSgur wise函数的前体函数,其结果符合来自其他来源的那些可用来源的人。这项研究还暴露了对从强烈相互作用和希格斯玻色子偶联的过渡形式因素的影响。

Using a symmetry-preserving regularisation of a vector$\times$vector contact interaction (SCI), we complete a systematic treatment of twelve semileptonic transitions with vector meson final states: $D\to ρ$, $D_{(s)}\to K^\ast$, $D_s\to ϕ$, $B\to ρ$, $B_s\to K^\ast$, $B_{(s)}\to D_{(s)}^\ast$, $B_c \to B_{(s)}^\ast, J/ψ, D^\ast$; and thereby finalise a unified analysis of semileptonic decays of heavy+heavy and heavy+light pseudoscalar mesons to both pseudoscalar and vector meson final states. The analysis is marked by algebraic simplicity, few parameters, and the ability to consistently describe systems from Nambu-Goldstone modes to heavy+heavy mesons. Regarding the behaviour of the transition form factors, the SCI results compare well wherever sound experimental or independent theory analyses are available; hence, the SCI branching fraction predictions should be a reasonable guide. Considering the ratios $R(D_{(s)}^{(\ast)})$, $R(J/ψ)$, $R(η_c)$, whose values are key tests of lepton universality in weak interactions, the SCI values agree with Standard Model predictions. The $B_{(s)}\to D_{(s)}^\ast$ transitions are used to predict the precursor functions that evolve into the universal Isgur-Wise function in the heavy-quark limit, with results that conform with those from other sources where such are available. The study also exposes effects on the transition form factors that flow from interference between emergent hadron mass from the strong interaction and Higgs boson couplings via current-quark masses, including flavour symmetry violation.

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