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A lattice study of $\pi\pi$ scattering at large $N_\text{c}$

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arxiv 2202.02291 v2 pith:5ODSN5PH submitted 2022-02-04 hep-lat hep-ph

classification hep-lathep-ph
keywords textscatteringlatticechannelchptfullylargerangle
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

We present the first lattice study of pion-pion scattering with varying number of colors, $N_\text{c}$. We use lattice simulations with four degenerate quark flavors, $N_\text{f}=4$, and $N_\text{c}=3-6$. We focus on two scattering channels that do not involve vacuum diagrams. These correspond to two irreducible representations of the SU(4) flavor group: the fully symmetric one, $SS$, and the fully antisymmetric one, $AA$. The former is a repulsive channel equivalent to the isospin-2 channel of SU(2). By contrast, the latter is attractive and only exists for $N_\text{f} \geq 4$. A representative state is $\left( |D_s^+ \pi^+\rangle - |D^+ K^+\rangle\right)/\sqrt{2}$. Using L\"uscher's formalism, we extract the near-threshold scattering amplitude and we match our results to Chiral Perturbation Theory (ChPT) at large $N_\text{c}$. For this, we compute the analytical U$(N_\text{f})$ ChPT prediction for two-pion scattering, and use the lattice results to constrain the $N_\text{c}$ scaling of the relevant low-energy couplings.

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  1. Results on meson-meson scattering at large $N_\text{c}$

    hep-lat 2025-01 conditional novelty 7.0 of 10

    Using lattice QCD with 3 to 6 colors and four quark flavors, the paper measures pion-pion scattering phase shifts and finds evidence consistent with a virtual bound state in one channel at three colors.

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