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Charmonium-nucleon interactions from the time-dependent HAL QCD method
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Charmonium-nucleon interactions from the time-dependent HAL QCD method
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The charmonium-nucleon effective central interactions have been computed by the time-dependent HAL QCD method. This gives an updated result of a previous study based on the time-independent method, which is now known to be problematic because of the difficulty in achieving the ground-state saturation. We discuss that the result is consistent with the heavy quark symmetry. No bound state is observed from the analysis of the scattering phase shift; however, this shall lead to a future search of the hidden-charm pentaquarks by considering channel-coupling effects.
Forward citations
Cited by 3 Pith papers
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Charmonium-nucleon femtoscopy as a possible probe of the nucleon gravitational form factor
Charmonium-nucleon femtoscopy is proposed as a probe of the nucleon D-form factor by constructing an effective potential from lattice gravitational form factors and matching it to HAL QCD results.
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Charmonium-nucleon femtoscopy as a possible probe of the nucleon gravitational form factor
Charmonium-nucleon femtoscopy is examined as a probe of the nucleon D-form factor by constructing an effective potential from gravitational form factors fitted to lattice data and matched to HAL QCD results.
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Low-energy scattering of the $J/\psi \pi$ and $J/\psi K$ system
First dispersive upper-bound estimates for J/ψπ and J/ψK scattering lengths, with soft-gluon exchange dominating the coupled-channel mechanism.
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