DK I = 0, $$ D\overline{K} $$ I = 0, 1 scattering and the $$ {D}_{s0}^{\ast } $$(2317) from lattice QCD

Elastic scattering amplitudes for I = 0 DK and I = 0 , 1 $$ D\overline{K} $$ D K ¯ are computed in S , P and D partial waves using lattice QCD with light-quark masses corresponding to m π = 239 MeV and m π = 391 MeV. The S -waves contain interesting features including a near-threshold J P = 0 + boun...

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Veröffentlicht in:The journal of high energy physics 2021-02, Vol.2021 (2), Article 100
Hauptverfasser: Cheung, Gavin K. C., Thomas, Christopher E., Wilson, David J., Moir, Graham, Peardon, Michael, Ryan, Sinéad M.
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Sprache:eng
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Zusammenfassung:Elastic scattering amplitudes for I = 0 DK and I = 0 , 1 $$ D\overline{K} $$ D K ¯ are computed in S , P and D partial waves using lattice QCD with light-quark masses corresponding to m π = 239 MeV and m π = 391 MeV. The S -waves contain interesting features including a near-threshold J P = 0 + bound state in I = 0 DK , corresponding to the $$ {D}_{s0}^{\ast } $$ D s 0 ∗ (2317), with an effect that is clearly visible above threshold, and suggestions of a 0 + virtual bound state in I = 0 $$ D\overline{K} $$ D K ¯ . The S -wave I = 1 $$ D\overline{K} $$ D K ¯ amplitude is found to be weakly repulsive. The computed finite-volume spectra also contain a deeply-bound D * vector resonance, but negligibly small P -wave DK interactions are observed in the energy region considered; the P and D -wave $$ D\overline{K} $$ D K ¯ amplitudes are also small. There is some evidence of 1 + and 2 + resonances in I = 0 DK at higher energies.
ISSN:1029-8479
1029-8479
DOI:10.1007/JHEP02(2021)100