Heavy-hadron molecular spectrum from light-meson exchange saturation

Heavy-hadron molecular spectrum from light-meson exchange saturation
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DOI:
10.1103/physrevd.105.034028
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发表时间:
2021-01
期刊:
影响因子:
5
通讯作者:
Fang-Zheng Peng;M. Sánchez Sánchez-M.-Sánchez-Sánchez-2125434047;Mao-Jun Yan;M. Pavon Valderrama
Fang-Zheng Peng;M. Sánchez Sánchez-M.-Sánchez-Sánchez-2125434047;Mao-Jun Yan;M. Pavon Valderrama
中科院分区:
物理与天体物理2区
文献类型:
--
作者:
Fang-Zheng Peng;M. Sánchez Sánchez-M.-Sánchez-Sánchez-2125434047;Mao-Jun Yan;M. Pavon Valderrama

文献摘要

相似文献

If known, the spectrum of heavy-hadron molecules will be a key tool to disentangle the nature of the exotic states that are being discovered in experiments. Here we argue that the general features of the molecular spectrum can be deduced from the idea that the short-range interaction between the heavy hadrons is effectively described by scalar and vector meson exchange, i.e. the σ, ω and ρ mesons. By means of a contact-range theory where the couplings are saturated by the aforementioned light mesons we are indeed able to postdict the X(3872) (as a D∗D̄ molecule) from the three Pc(4312), Pc(4440) and Pc(4457) pentaquarks (as D̄Σc and D̄ Σc molecules). We predict a J = 1−− DD̄1 molecule at 4240 − 4260 MeV which might support the hypothesis that the Y(4260) is at least partly molecular. The extension of these ideas to the light baryons requires minor modifications, after which we recover approximate SU(4)-Wigner symmetry in the two-nucleon system and approximately reproduce the masses of the deuteron and the virtual state.