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$D$ meson mixing as an inverse problem

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arxiv 2001.04079 v2 pith:F3PQ46DC submitted 2020-01-13 hep-ph hep-ex

classification hep-phhep-ex
keywords mixingmesonparametersapproxcharmdispersioninversemodel
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

We calculate the parameters $x$ and $y$ for the $D$ meson mixing in the Standard Model by considering a dispersion relation between them. The dispersion relation for a fictitious charm quark of arbitrary mass squared $s$ is turned into an inverse problem, via which the mixing parameters at low $s$ are solved with the perturbative inputs $x(s)$ and $y(s)$ from large $s$. It is shown that nontrivial solutions for $x$ and $y$ exist, whose values around the physical charm scale agree with the data in both CP-conserving and CP-violating cases. We then predict the observables $|q/p|-1\approx 2\times 10^{-4}$ and $Arg(q/p)\approx 6\times 10^{-3}$ degrees associated with the coefficient ratio for the $D$ meson mixing, which can be confronted with more precise future measurements. Our work represents the first successful quantitative attempt to explain the $D$ meson mixing parameters in the Standard Model.

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  1. Nonperturbative Dynamics in D-meson Mixing

    hep-ph 2025-08 conditional novelty 6.0 of 10

    First calculation of dimension-11 and dimension-12 QCD condensate contributions to D-meson mixing gives xD = 1.27e-5, still below experiment.

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