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Precision half-life measurement of P-29

机译:P-29的精确半衰期测量

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A new precision half-life measurement of P-29 was conducted using the TwinSol beta-counting station at the University of Notre Dame Nuclear Science Laboratory. The resulting value of t(1/2)(new) = 4.1055(44) s is the most precise P-29 half-life measurement to date. Utilizing this measurement and reevaluating the world data leads to a new world average of t(1/2)(world) = 4.1031(58) s, which improves the Birge ratio from 3.11 to 1.45 and is 2.3 times more precise than the previous world value. The new Cabibbo-Kobayashi-Maskawa matrix element V-ud for P-29 shifts closer into agreement with the superallowed pure Fermi value. The uncertainty in the mixed transition value of V-ud, however, is still dominated by the Fermi to Gamow-Teller mixing ratio rho. Using the new world half-life and assuming the validity of the standard model, a new predicted value for rho and its associated correlation parameters have been evaluated in order to guide future determination of rho.
机译:使用Notre Dame核科学实验室大学的Twinsol Beta Counting Station进行了新的Preation半衰期。 产生的T(1/2)(新)= 4.1055(44)S的结果是迄今为止最精确的P-29半衰期测量。 利用此测量和重新评估世界数据导致T(1/2)(世界)= 4.1031(58)S的新的世界平均水平,这将Birge比率从3.11提高到1.45,比以前的世界更准确于2.3倍 价值。 对于P-29的新Cabibbo-Kobayashi-Maskawa矩阵元素V-UD与超级纯Fermi值相一致地换档。 然而,V-UD的混合过渡值中的不确定性仍然由FERMI主导到Gamow-Threater混合比Rho。 使用新的世界半衰期并假设标准模型的有效性,已经评估了RHO的新预测值及其相关的相关参数,以便引导未来的RHO的确定。

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