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Charmonia in an unquenched quark model

Published 16 Dec 2023 in hep-ph and hep-ex | (2312.10296v1)

Abstract: In this work, we study the charmonium spectrum within an unquenched quark model including coupled-channel effects. In couple-channel calculations, we include all of the opened charmed meson channels with the once-subtracted method, meanwhile adopt a suppressed factor to soften the hard vertices given by the <sup>3P0<sup>3P_0 model in the high momentum region. We obtain a good description of both the masses and widths for the well-established states in the charmonium spectrum. Furthermore, we give predictions for the higher SS-, PP- and DD-wave charmonium states up to mass region of ∼5.0\sim 5.0 GeV. The magnitude of mass shifts due to the coupled-channel effects is estimated to be about $10s$ MeV. Although many decay channels are opened for the higher charmonium states, they are relatively narrow states. Their widths scatter in the range of ∼10s−100\sim 10s-100 MeV. Many charmonium-like states, such as χc1(3872)\chi_{c1}(3872), χc1(4274)\chi_{c1}(4274), χc0(3915)\chi_{c0}(3915), χc0(4500)\chi_{c0}(4500), χc0(4700)\chi_{c0}(4700), X(4160)X(4160), X(4350)X(4350), Y(4500)Y(4500), and ψ(4660)\psi(4660)/Y(4710)Y(4710), can be accommodated by the charmonium spectrum when the unquenched coupled-channel effects are carefully considered.

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