Charmonium χc0 and χc2 resonances in coupled-channel scattering from lattice QCD

Author:

Wilson David J.1ORCID,Thomas Christopher E.1ORCID,Dudek Jozef J.23ORCID,Edwards Robert G.2ORCID,

Affiliation:

1. University of Cambridge

2. Thomas Jefferson National Accelerator Facility

3. College of William and Mary

Abstract

In order to explore the spectrum of hidden-charm scalar and tensor resonances, we study meson-meson scattering with JPC=0++,2++ in the charmonium energy region using lattice QCD. Employing a light-quark mass corresponding to mπ391MeV, we determine coupled-channel scattering amplitudes up to around 4100 MeV considering all kinematically relevant channels consisting of a pair of open-charm mesons or a charmonium meson with a light meson. A single isolated scalar resonance near 4000 MeV is found with large couplings to DD¯, DsD¯s and the kinematically closed D*D¯* channel. A single tensor resonance at a similar mass couples strongly to DD¯, DD¯* and D*D¯*. We compare the extracted resonances to contemporary experimental candidate states, previous lattice results and theoretical modeling. In contrast to several other studies, we do not find any significant feature in the scalar amplitudes between the ground state χc0(1P) and the resonance found around 4000 MeV. Published by the American Physical Society 2024

Funder

Science and Technology Facilities Council

U.S. Department of Energy

College of William and Mary

Office of Science

Office of Advanced Scientific Computing Research

Nuclear Physics

National Nuclear Security Administration

Department for Business, Energy and Industrial Strategy, UK Government

Engineering and Physical Sciences Research Council

National Energy Research Scientific Computing Center

Lawrence Berkeley National Laboratory

University of Texas at Austin

National Science Foundation

Royal Society

Scientific Discovery through Advanced Computing

Rolls Royce and Mitsubishi Heavy Industries

ALCC

Oak Ridge Leadership Computing Facility

Texas Advanced Computing Center

Extreme Science and Engineering Discovery Environment

Blue Waters

Publisher

American Physical Society (APS)

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