半轻子 W 衰变为 B 介子与轻子对的 HQET 因子化,直到 O

IF 4.3 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC ACS Applied Electronic Materials Pub Date : 2024-05-31 DOI:10.1093/ptep/ptae080
Saadi Ishaq, Sajawal Zafar, Abdur Rehman, Ishtiaq Ahmed
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引用次数: 0

摘要

受在重夸克有效理论(HQET)因子化框架内研究重-轻介子产生的启发,我们扩展了因子化公式,用于在二轻子非零不变平方质量(q2)的极限下,在1/mb的最低阶达到$\mathcal {O}(\alpha _s)$的相当复杂的W+ → B+ℓ+ℓ- 过程。当前研究的目的是扩展 W+ → B+ℓ+ℓ- 过程的 HQET 因式分解公式,并随后计算该信道的形式因子,直到 αs 中的次前沿阶(NLO)修正。我们明确表明,W+ → B+ℓ+ℓ- 过程的振幅也可以因式分解为可微扰计算的硬散射核与 HQET 中定义的非微扰但普遍的光锥分布振幅(LCDA)之间的卷积。HQET 因式分解的有效性取决于假定的尺度层次 mW ∼ mb ≫ Λ QCD。在 HQET 框架内,我们评估了与 W+ → B+ℓ+ℓ- 过程相关的形式因子,提供了对其现象学的见解。此外,我们还对 W+ → B+ℓ+ℓ- 过程进行了探索性的现象学研究,为 B+ 介子的 LCDAs 采用了指数模型。我们的研究结果表明,W+ → B+ℓ+ℓ- 的分支比低于 10-10。虽然分支比很小,但在高辉度大型强子对撞机实验中的这一通道可能有助于进一步约束λB的值。
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Semi-leptonic W decay to B meson with lepton pairs in HQET factorization upto O
Motivated by the study of heavy-light meson production within the framework of heavy quark effective theory (HQET) factorization, we extend the factorization formalism for rather a complicated process W+ → B+ℓ+ℓ− in the limit of non-zero invariant squared-mass of dilepton, q2, at the lowest order in 1/mb up to $\mathcal {O}(\alpha _s)$. The purpose of the current study is to extend the HQET factorization formula for the W+ → B+ℓ+ℓ− process and subsequently compute the form factors for this channel up to next-to-leading order (NLO) corrections in αs. We explicitly show the amplitude of the W+ → B+ℓ+ℓ− process can also be factorized into a convolution between the perturbatively calculable hard-scattering kernel and the non-perturbative yet universal light-cone distribution amplitude (LCDA) defined in HQET. The validity of HQET factorization depends on the assumed scale hierarchy mW ∼ mb ≫ ΛQCD. Within the HQET framework, we evaluate the form factors associated with the W+ → B+ℓ+ℓ− process, providing insights into its phenomenology. In addition, we also perform an exploratory phenomenological study on W+ → B+ℓ+ℓ− by employing an exponential model for the LCDAs for B+ meson. Our findings reveal that the branching ratio for W+ → B+ℓ+ℓ− is below 10−10. Although the branching ratios are small, this channel in high luminosity LHC experiments may serve to further constraints the value of λB.
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7.20
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4.30%
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567
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