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Zero-energy neutron-triton and proton-Helium-3 scattering with EFT(π{combining long solidus overlay})

机译:零能中子-质子和质子-氦3散射与EFT(π{结合长固相线叠加})

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摘要

Model-independent constraints for the neutron-triton and proton-Helium-3 scattering lengths are calculated with a leading-order interaction derived from an effective field theory without explicit pions. Using the singlet neutron-proton scattering length, the deuteron-, and triton binding energy as input, the predictions as(t-n)=9.2±2.6fm, at(t-n)=7.6±1.6fm, asC(He3-p)=3.6±0.32fm, and atC(He3-p)=3.1±0.23fm are obtained. The calculations employ the resonating group method and include the Coulomb interaction when appropriate. The theoretical uncertainty is assessed via a variation of the regulator parameter of the short-distance interaction from 400 MeV to 1.6 GeV. The phase-shift and scattering-length results for the proton-Helium-3 system are consistent with a recent phase shift analysis and with model calculations. For neutron-triton, the results for the scattering lengths in both singlet and triplet channels are significantly smaller than suggested by R-matrix and partial-wave-analysis extractions from data. For a better understanding of this discrepancy, the sensitivity of the low-energy four-body scattering system to variations in the neutron-neutron and proton-proton two-nucleon scattering lengths is calculated. Induced by strong charge-symmetry-breaking contact interactions, this dependence is found insignificant. In contrast, a strong correlation between the neutron-triton scattering length and the triton binding energy analogous to the Phillips line is found.
机译:中子-质子和质子-Helium-3散射长度的与模型无关的约束条件是根据有效场论导出的前导相互作用来计算的,而没有明确的介子。使用单线态中子-质子散射长度,氘和tri的结合能作为输入,预测为(tn)= 9.2±2.6fm,at(tn)= 7.6±1.6fm,asC(He3-p)= 3.6获得±0.32fm,并且在C(He3-p)= 3.1±0.23fm。计算采用共振群法,并在适当时包括库仑相互作用。通过将短距离相互作用的调节器参数从400 MeV更改为1.6 GeV,可以评估理论不确定性。质子-Helium-3系统的相移和散射长度结果与最近的相移分析和模型计算一致。对于中子tri子,在单重态和三重态通道中的散射长度结果明显小于R矩阵和从数据中进行部分波分析提取的结果。为了更好地理解这种差异,计算了低能四体散射系统对中子-中子和质子-质子两核子散射长度变化的敏感性。由强电荷-对称-破坏接触相互作用引起,这种依赖性被发现是微不足道的。相反,发现中子-tri子散射长度和类似于菲利普斯线的tri子结合能之间有很强的相关性。

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