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Baryon wave functions and free neutron decay in the scalar strong interaction hadron theory (SSI)

机译:标量强相互作用强子理论(SSI)中的重子波函数和自由中子衰变

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From the equations of motion for baryons in the scalar strong interaction hadron theory (SSI), two coupled third order radial wave equations for baryon doublets have been derived and published in 1994. These equations are solved numerically here, using quark masses obtained from meson spectra and the masses of the neutron, ?0 and ?0 as input. Confined wave functions dependent upon the quark-diquark distance as well as the values of the four integration constants entering the quark-diquark interaction potential are found approximately. These approximative, zeroth order results are employed in a first order perturbational treatment of the equations of motion for baryons in SSI for free neutron decay. The predicted magnitude of neutron’s half life agrees with data. If the only free parameter is adjusted to produce the known A asymmetry coefficient, the predicted B asymmetry agrees well with data and vice versa. It is pointed out that angular momentum is not conserved in free neutron decay and that the weak coupling constant is detached from the much stronger fine structure constant of electromagnetic coupling.
机译:根据标量强相互作用强子理论(SSI)中重子的运动方程,在1994年推导并发布了两个偶合的重子二重态三阶径向波方程。这些方程在此使用从介子谱获得的夸克质量进行数值求解。输入的中子质量为0和0。近似发现了依赖于夸克-夸克距离以及进入夸克-夸克相互作用势的四个积分常数的值的约束波函数。这些近似的零阶结果用于自由中子衰变的SSI中重子运动方程的一阶微扰处理。中子半衰期的预测大小与数据一致。如果调整了唯一的自由参数以产生已知的A不对称系数,则预测的B不对称与数据非常吻合,反之亦然。指出,角动量在自由中子衰变中不守恒,并且弱耦合常数与强得多的电磁耦合精细结构常数分离。

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