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Testing the tetraquark mixing framework from QCD sum rules for a0(980)

机译:根据QCD求和规则对a0的四夸克混合框架进行测试(980)

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摘要

According to a recent proposal of the tetraquark mixing framework, the two light-meson nonets in the J P = 0 + channel, namely, the light nonet composed of a 0 ( 980 ) , K 0 * ( 800 ) , f 0 ( 500 ) , f 0 ( 980 ) , and the heavy nonet of a 0 ( 1450 ) , K 0 * ( 1430 ) , f 0 ( 1370 ) , f 0 ( 1500 ) , can be expressed by linear combinations of the two tetraquark types, one type containing the spin-0 diquark and the other with the spin-1 diquark. Among various consequences of this mixing model, one surprising result is that the second tetraquark with the spin-1 diquark configuration is more important for the light nonet. In this work, we report that this result can be supported by the QCD sum rule calculation. In particular, we construct a QCD sum rule for the isovector resonance a 0 ( 980 ) using an interpolating field composed of both tetraquark types and then perform the operator product expansion up to dimension 10 operators. Our sum rule analysis shows that the spin-1 diquark configuration is crucial in generating the a 0 ( 980 ) mass. Also, the mixed correlation function constructed from the two tetraquark types is found to have large strength, which seems consistent with what the tetraquark mixing framework is advocating. On the other hand, the correlation function from the interpolating field with the spin-0 diquark configuration alone fails to predict the a 0 ( 980 ) mass mostly by the huge negative contribution from dimension 8 operators.
机译:根据四夸克混合框架的最新提议,JP = 0 +通道中的两个轻介子nonet,即由0(980),K 0 *(800),f 0(500)组成的光nonet ,f 0(980)和a 0(1450),K 0 *(1430),f 0(1370),f 0(1500)的重名词可以用两种四夸克类型的线性组合表示类型包含spin-0 diquark,另一个包含spin-1 diquark。在此混合模型的各种结果中,一个令人惊讶的结果是,具有spin-1 diquark构型的第二个四夸克对轻型结点更为重要。在这项工作中,我们报告说QCD和规则计算可以支持此结果。特别是,我们使用由两种四夸克类型组成的插值场构造了等矢量共振a 0(980)的QCD和规则,然后执行算子乘积展开直至维10算子。我们的求和规则分析表明,spin-1 diquark构型对于生成0(980)质量至关重要。同样,发现由两种四夸克类型构成的混合相关函数具有很大的强度,这似乎与四夸克混合框架所提倡的一致。另一方面,仅具有自旋0双夸克配置的来自插值场的相关函数无法主要通过8维算子的巨大负贡献来预测a 0(980)质量。

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