Searching for New Physics in Rare \(K\) and \(B\) Decays without \(|V_{cb}|\) and \(|V_{ub}|\) Uncertainties

IF 0.9 4区 物理与天体物理 Q3 PHYSICS, MULTIDISCIPLINARY
A. Buras, E. Venturini
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引用次数: 20

Abstract

We reemphasize the strong dependence of the branching ratios $B(K^+\to\pi^+\nu\bar\nu)$ and $B(K_L\to\pi^0\nu\bar\nu)$ on $|V_{cb}|$ that is stronger than in rare $B$ decays, in particular for $K_L\to\pi^0\nu\bar\nu$. Thereby the persistent tension between inclusive and exclusive determinations of $|V_{cb}|$ weakens the power of these theoretically clean decays in the search for new physics (NP). We demonstrate how this uncertainty can be practically removed by considering within the SM suitable ratios of the two branching ratios between each other and with other observables like the branching ratios for $K_S\to\mu^+\mu^-$, $B_{s,d}\to\mu^+\mu^-$ and $B\to K(K^*)\nu\bar\nu$. We use as basic CKM parameters $V_{us}$, $|V_{cb}|$ and the angles $\beta$ and $\gamma$ in the unitarity triangle (UT). This avoids the use of the problematic $|V_{ub}|$. A ratio involving $B(K^+\to\pi^+\nu\bar\nu)$ and $B(B_s\to\mu^+\mu^-)$ while being $|V_{cb}|$-independent exhibits sizable dependence on the angle $\gamma$. It should be of interest for several experimental groups in the coming years. We point out that the $|V_{cb}|$-independent ratio of $B(B^+\to K^+\nu\bar\nu)$ and $B(B_s\to\mu^+\mu^-)$ from Belle II and LHCb signals a $1.8\sigma$ tension with its SM value. As a complementary test of the Standard Model, we propose to extract $|V_{cb}|$ from different observables as a function of $\beta$ and $\gamma$. We illustrate this with $\epsilon_K$, $\Delta M_d$ and $\Delta M_s$ finding tensions between these three determinations of $|V_{cb}|$ within the SM. From $\Delta M_s$ and $S_{\psi K_S}$ alone we find $|V_{cb}|=41.8(6)\times 10^{-3}$ and $|V_{ub}|=3.65(12)\times 10^{-3}$. We stress the importance of a precise measurement of $\gamma$. We obtain most precise SM predictions for considered branching ratios of rare K and B decays to date.
在没有(|V_{cb}|\)和(|V_{ub}|\\)不确定性的稀有(K\)和\(B\)衰变中寻找新物理
我们重新强调了分支比$B(K^+\to\pi^+\nu\bar\nu)$和$B(K_L\to\pi ^0\nu\bar\ nu)$对$|V_{cb}|$的强依赖性,这比罕见的$B$衰变更强,特别是对于$K_L\to \pi ^0\nu\bar \ nu$。因此,$|V_{cb}|$的包容性和排他性确定之间的持续张力削弱了这些理论上干净衰变在寻找新物理学(NP)中的力量。我们证明了如何通过在SM内考虑彼此之间的两个分支比率的适当比率以及其他可观察性来实际消除这种不确定性,例如$K_S\到\mu^+\mu^-$、$B_{S,d}\到\mu ^+\mu ^-$和$B\到K(K^*)\nu\bar\nu$的分支比率。我们使用酉三角形(UT)中的$V_{us}$、$|V_{cb}|$以及角度$\beta$和$\gamma$作为基本CKM参数。这避免了使用有问题的$|V_{ub}|$。涉及$B(K^+\到\pi^+\nu\bar\nu)$和$B(B_s\到\mu^+\mu^-)$的比率在$|V_{cb}|$独立的情况下表现出对角度$\gamma$的相当大的依赖性。在未来几年里,几个实验小组应该对此感兴趣。我们指出,Belle II和LHCb的$B(B^+\to K^+\nu\bar\nu)$和$B(B_s\to \mu^+\mu^-)$的$|V_{cb}|$独立比率表明其SM值为$1.8\sigma$张力。作为标准模型的补充测试,我们建议从不同的可观察器中提取$|V_{cb}|$,作为$\beta$和$\gamma$的函数。我们用$\epsilon_K$、$\Delta M_d$和$\Del塔M_s$来说明这一点,它们在SM中发现了$|V_{cb}|$的这三个确定之间的紧张关系。仅从$\DeltaM_s$和$s_{\psiK_s}$,我们就发现$|V_{cb}|=41.8(6)\乘以10^{-3}$和$|V_{ub}|=3.65(12)\乘以10 ^{-3}$。我们强调精确测量$\gamma$的重要性。我们获得了迄今为止罕见K和B衰变的分支比的最精确SM预测。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Acta Physica Polonica B
Acta Physica Polonica B 物理-物理:综合
CiteScore
1.70
自引率
20.00%
发文量
30
审稿时长
3-8 weeks
期刊介绍: Acta Physica Polonica B covers the following areas of physics: -General and Mathematical Physics- Particle Physics and Field Theory- Nuclear Physics- Theory of Relativity and Astrophysics- Statistical Physics
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