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Heavy-hadron molecules from light-meson-exchange saturation

机译:来自轻介子交换饱和度的重质带分子

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In the effective field theory framework the interaction between two heavy hadrons can be decomposed into a long- and a short-range piece. The long-range piece corresponds to the one-pion-exchange potential and is relatively well known. The short-range piece is given by a series of contact-range interactions with unknown couplings, which substitute the less well-known short-range dynamics. While the general structure of the short-range potential between heavy hadrons is heavily constrained from heavy-quark symmetry, the couplings are still free parameters. Here we argue that the relative strength and the sign of these couplings can be estimated from the hypothesis that they are saturated by the exchange of light mesons, in particular the vector mesons ρ and ω , i.e., from resonance saturation. However, we propose a novel saturation procedure that effectively removes form-factor artifacts. From this we can determine in which spin and isospin configurations the low-energy constants are most attractive for specific two-heavy-hadron systems. In general the molecular states with lower isospins and higher spins will be more attractive and thus more probable candidates to form heavy-hadron molecules. This pattern is compatible with the interpretation of the X ( 3872 ) and P c ( 4312 / 4440 / 4457 ) as molecular states, but it is not applicable to states with maximum isospin like the Z c ( 3900 / 4020 ) .
机译:在有效场论框架两条重强子之间的相互作用可以被分解为一个长期和短程片。远程片对应于一π介子交换电位和相对公知的。短程片是由一系列具有未知联轴器,其中替代的不太知名的短程动力学接触程相互作用的给出。而重强子之间的短距离的潜在的一般结构在很大程度上由重夸克对称性约束,联接器仍然可以自由参数。在这里,我们认为,相对强度和这些耦合的符号可以从假设,即它们是通过光介子交换饱和来估计,特别是矢量介子ρ和ω,即,从谐振饱和。然而,我们提出了一个新颖的饱和过程,有效地消除了外形的文物。由此我们可以判断,其中自旋和同位旋配置,低能量的常量是特定二重强子系统最吸引人的。通常具有较低isospins和更高的自旋的分子状态会更有吸引力,从而更可能候选形式重强子分子。此图案是与X(3872)和P C(4312 /4457分之4440)作为分子态的解释兼容的,但它不适用于状态与像在Z C(4020分之3900)最大同位旋。

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