Abstract
In a general framework, valid for any $H\to H'\ell^-\bar\nu_\ell$ semileptonic decay, we analyze the $d^2\Gamma/(d\omega d\cos\theta_\ell)$ and $d^2\Gamma/ (d\omega dE_\ell)$ distributions, with $\omega$ being the product of the hadron four-velocities, $\theta_\ell$ the angle made by the three-momenta of the charged lepton and the final hadron in the $W^-$ center of mass frame and $E_\ell$ the charged lepton energy in the decaying hadron rest frame. Within the Standard Model (SM), $ d^2\Gamma/(d\omega dE_\ell)\propto \left(c_0(\omega)+c_1(\omega)E_\ell/M+c_2(\omega)E^2_\ell/M^2\right)$, with $M$ the initial hadron mass. We find that $c_2(\omega)$ is independent of the lepton flavor and thus it is an ideal candidate to look for lepton flavor universality (LFU) violations. We also find a correlation between the $a_2(\omega)$ structure function, that governs the $(\cos\theta_\ell)^2$ dependence of $d^2\Gamma/(d\omega d\cos\theta_\ell)$, and $c_2(\omega)$. Apart from trivial kinematical and mass factors, the ratio of $a_2(\omega)/c_2(\omega)$ is a universal function that can be measured in any semileptonic decay, involving not only $b\to c$ transitions. These two SM predictions can be used as new tests in the present search for signatures of LFU violations. We also generalize the formalism to account for some new physics (NP) terms. Finally, in order to illustrate our findings, we apply our general framework to the $\Lambda_b\to \Lambda_c \ell \bar\nu_\ell$ decay. We show that a measurement of $c_2$ (or $a_2$) for $\tau$ decay would not only be a direct measurement of the possible existence of NP, but it would also allow to distinguish from NP fits to $b\to c\tau\bar\nu_\tau$ anomalies in the meson sector, that otherwise give the same total and differential $d\Gamma/d\omega$ widths.
Highlights
We have introduced a general framework, valid for any H → H0lνl semileptonic decay, to study the lepton polarized c.m. d2Γ=ðdωd cos θlÞ and LAB d2Γ=ðdωdElÞ differential decay widths
This is the first time that the relevance of the d2Γ=ðdωdElÞ differential decay width has been put forward as a candidate for lepton flavor universality (LFU) violation studies in b → c decays
We have found a correlation between the a2ðωÞ structure functions (SFs) related to the ðcos θlÞ2 dependence in d2Γ=ðdωd cos θlÞ and c2ðωÞ
Summary
The discrepancies, between available data and the Standard Model (SM) predictions seen in semileptonic. In this work we introduce a general framework to study any baryon/meson semileptonic decay for unpolarized hadrons, though we refer explicitly here to those induced by the b → c transition Within this scheme we find general expressions for the d2Γ=ðdωd cos θlÞ and d2Γ=ðdωdElÞ differential decay widths (see below), each of them expressible in terms of three different structure functions (SFs). We show that the ratio of both of them within the SM should be a universal function, which could be measured in all types of hadron (baryon or meson) semileptonic decays governed by CC c → s, c → d, s → u, b → u transitions This charged lepton energy-angle correlation should be experimentally accessible and, if violated, it would be a clear indication of NP, eliminating some possible Lorentz structures for the new terms as we will discuss. We discuss how some features of that spectrum can be used to distinguish between different NP scenarios that otherwise lead to the same total and differential semileptonic decay widths
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