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論文

Stable double-heavy tetraquarks; Spectrum and structure

Meng, Q.*; 肥山 詠美子*; 保坂 淳; 岡 眞; Gubler, P.; Can, K. U.*; 高橋 徹*; Zong, H. S.*

Physics Letters B, 814, p.136095_1 - 136095_6, 2021/03

 被引用回数:2 パーセンタイル:90.09(Astronomy & Astrophysics)

Bound states of double-heavy tetraquarks are studied in a constituent quark model. Two bound states are found for isospin and spin-parity $$I(J^P) = 0(1^+)$$ in the $$bbbar{u}bar{d}$$ channel. One is deeply bound and compact made of colored diquarks, while the other is shallow and extended as a $$BB^{ast}$$ molecule. The former agrees well with lattice QCD results. A systematic decrease in the binding energy is seen by replacing one of the heavy quarks to a lighter one. Altogether we find ten bound states. It is shown for the first time that hadrons with totally different natures emerge from a single Hamiltonian.

論文

Compact $$ssscbar c$$ pentaquark states predicted by a quark model

Meng, Q.*; 肥山 詠美子*; Can, K. U.*; Gubler, P.; 岡 眞; 保坂 淳; Zong, H.*

Physics Letters B, 798, p.135028_1 - 135028_8, 2019/11

 被引用回数:0

Several compact $$ssscbar c$$ pentaquark resonances are predicted in a potential quark model. The Hamiltonian is the best available one, which reproduces the masses of the low-lying charmed and strange hadrons well. Full five-body calculations are carried out by the use of the Gaussian expansion method, and the relevant baryon-meson thresholds are taken into account explicitly. Employing the real scaling method, we predict four sharp resonances, $$J^P=1/2^-$$ ($$E$$ = 5180 MeV, $$Gamma$$ = 20 MeV) and others. These are the candidates of compact pentaquark resonance states from the current best quark model, which should be confirmed either by experiments or lattice QCD calculations.

論文

Compact $$ssscbar{c}$$ pentaquark states predicted by a quark model

Meng, Q.*; 肥山 詠美子; Can, K. U.*; Gubler, P.; 岡 眞; 保坂 淳; Zong, H.*

Physics Letters B, 798, p.135028_1 - 135028_8, 2019/11

AA2019-0487.pdf:1.01MB

 被引用回数:7 パーセンタイル:80.58(Astronomy & Astrophysics)

Several compact $$ssscbar{c}$$ pentaquark resonances are predicted in a potential quark model. The Hamiltonian is the best available one, which reproduces the masses of the low-lying charmed and strange hadrons well. Full five-body calculations are carried out by the use of the Gaussian expansion method, and the relevant baryon-meson thresholds are taken into account explicitly. Employing the real scaling method, we predict four sharp resonances. These are the candidates of compact pentaquark resonance states from the current best quark model, which should be confirmed either by experiments or lattice QCD calculations.

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