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Effect of $K^{0}-\bar{K}^{0}$ Mixing on $CP$ Asymmetries in Weak Decays of $D$ and $B$ Mesons

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abstract

Within the standard electroweak model we carry out an instructive analysis of the effect of $K^{0}-\bar{K}^{0}$ mixing on $CP$ asymmetries in some weak decay modes of $D^{\pm}$ and $\stackrel{(-)}{B}$$^{0}_{d}$ mesons. We point out that a clean signal of $CP$ violation with magnitude of 2Re($\epsilon$) $\approx 3.3\times 10^{-3}$ can manifest in the semileptonic decays $D^{+}\rightarrow l^{+}\nu^{~}_{l}K_{S}$ ($K_{L}$) vs $D^{-}\rightarrow l^{-}\bar{\nu}^{~}_{l}K_{S}$ ($K_{L}$). The $CP$ asymmetries are also dominated by 2Re($\epsilon$) in the two-body nonleptonic decays $D^{\pm} \rightarrow (\pi^{\pm}, \rho^{\pm}, a^{\pm}_{1})+ (K_{S}, K_{L})$ and in the multi-body processes $D^{\pm}\rightarrow \pi^{\pm}+n_{0}\pi^{0}+n_{\pm} (\pi^{\pm}\pi^{\mp})+ (K_{S}, K_{L})$, where $n_{0}$ and $n_{\pm}$ are integers. It is possible to observe such $CP$-violating signals with about $10^{7}$ $D^{\pm}$ events at $\tau$-charm factories or hadron machines. Finally we show that the $CP$ asymmetry induced by Re($\epsilon$) may compete with those from $B^{0}_{d}-\bar{B}^{0}_{d}$ mixing and final-state interactions in the semi-inclusive and exclusive decays $B_{d}\rightarrow X(c\bar{c})+(K_{S}, K_{L})$ on the $\Upsilon (4S)$ resonance.

fields

hep-ph 1

years

2026 1

verdicts

UNVERDICTED 1

representative citing papers

CP asymmetries in $D\to K^0_{S,L}P$ and $D\to K^0_{S,L}V$ decays

hep-ph · 2026-05-14 · unverdicted · novelty 6.0

Derives CP asymmetry formulas for D to KS,L P/V decays with mixing effects, fits hadronic parameters from branching fractions via topological diagrams, predicts O(10^{-3}) effects in several modes and reduces tension in KS-KL data for omega and phi.

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  • CP asymmetries in $D\to K^0_{S,L}P$ and $D\to K^0_{S,L}V$ decays hep-ph · 2026-05-14 · unverdicted · none · ref 7 · internal anchor

    Derives CP asymmetry formulas for D to KS,L P/V decays with mixing effects, fits hadronic parameters from branching fractions via topological diagrams, predicts O(10^{-3}) effects in several modes and reduces tension in KS-KL data for omega and phi.