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Determination of the cross section of the 39K(n,p)39Ar reaction induced by D-D neutrons with neutron activation and noble gas mass spectrometry techniques

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【作者】 刘笑函兰长林李昊南高波徐阔之潘江龙潘小东史万峰李保春苏菲贺怀宇李军杰

【Author】 Xiao-Han Liu;Chang-Lin Lan;Hao-Nan Li;Bo Gao;Kuo-Zhi Xu;Jiang-Long Pan;Xiao-Dong Pan;Wan-Feng Shi;Bao-Chun Li;Fei Su;Huai-Yu He;Jun-Jie Li;College of Physics and Electronic Engineering, Shanxi University;School of Nuclear Science and Technology, Lanzhou University;The Institute of Geology and Geophysics, Chinese Academy of Geological Sciences;Beijing Research Institute of Uranium Geology;

【机构】 College of Physics and Electronic Engineering, Shanxi UniversitySchool of Nuclear Science and Technology, Lanzhou UniversityThe Institute of Geology and Geophysics, Chinese Academy of Geological SciencesBeijing Research Institute of Uranium Geology

【摘要】 The cross-sections of 39K(n,p)39Ar at an energy of 2–3 MeV play an important role in nuclear structure research and 40Ar/39Ar geochronology application.Due to the limitations of n-3He coincidence technology and counting instruments,the data in literature are from before 1967,and existing data are scarce and significantly diverge.Meanwhile,there are large discrepancies between the measured and evaluation results.By taking advantage of the high sensitivity and resolution of the noble gas mass spectrometer at the Institute of Geology and Geophysics,Chinese Academy of Sciences (IGGCAS),the cross-sections of 39K(n,p)39Ar were measured by combining neutron activity analysis and noble gas mass spectrometry,and the uncertainties are discussed in detail.The cross-sections of39K(n,p)39Ar were measured as 103.84±16.33,109.76±15.88,and 150.27±24.19 mb at 2.56±0.08,2.69±0.08,and 2.96±0.12 MeV energies,respectively.The measured data filled the data gaps and provided more accurate data support for 40Ar/39Ar dating.Furthermore,the theoretical excitation function of 39K(n,p)39Ar was calculated using TALYS-1.97 computer codes.Then,the experimentally determined cross-sections were analyzed by comparing them with the data from the EXFOR database and evaluated nuclear data in ENDF/B-VIII.0,JEFF-3.2,TENDL-2021,BROND-3.1,and JENDL-5 databases.According to the comparative results,the measured cross-sections of39K(n,p)39Ar exhibit a rapid energy-dependent increase between 2–3 MeV,aligning with higher literature values and resolving previous discrepancies.Compared with the previously reported data,the precision of the determined crosssections in this study showed considerable improvement.The comparison of measured data indicates that the combined detection method of neutron activity analysis and noble gas mass spectrometry techniques is suitable for measuring the cross-sections of nuclear reactions with long-lived product nuclei and the application of 40Ar/39Ar geochronology with a D-D neutron source.

【Abstract】 The cross-sections of 39K(n,p)39Ar at an energy of 2–3 MeV play an important role in nuclear structure research and 40Ar/39Ar geochronology application.Due to the limitations of n-3He coincidence technology and counting instruments,the data in literature are from before 1967,and existing data are scarce and significantly diverge.Meanwhile,there are large discrepancies between the measured and evaluation results.By taking advantage of the high sensitivity and resolution of the noble gas mass spectrometer at the Institute of Geology and Geophysics,Chinese Academy of Sciences (IGGCAS),the cross-sections of 39K(n,p)39Ar were measured by combining neutron activity analysis and noble gas mass spectrometry,and the uncertainties are discussed in detail.The cross-sections of39K(n,p)39Ar were measured as 103.84±16.33,109.76±15.88,and 150.27±24.19 mb at 2.56±0.08,2.69±0.08,and 2.96±0.12 MeV energies,respectively.The measured data filled the data gaps and provided more accurate data support for 40Ar/39Ar dating.Furthermore,the theoretical excitation function of 39K(n,p)39Ar was calculated using TALYS-1.97 computer codes.Then,the experimentally determined cross-sections were analyzed by comparing them with the data from the EXFOR database and evaluated nuclear data in ENDF/B-VIII.0,JEFF-3.2,TENDL-2021,BROND-3.1,and JENDL-5 databases.According to the comparative results,the measured cross-sections of39K(n,p)39Ar exhibit a rapid energy-dependent increase between 2–3 MeV,aligning with higher literature values and resolving previous discrepancies.Compared with the previously reported data,the precision of the determined crosssections in this study showed considerable improvement.The comparison of measured data indicates that the combined detection method of neutron activity analysis and noble gas mass spectrometry techniques is suitable for measuring the cross-sections of nuclear reactions with long-lived product nuclei and the application of 40Ar/39Ar geochronology with a D-D neutron source.

【基金】 Supported by the National Nuclear Energy Development Project (HNKF202327 (36));the National Natural Science Foundation of China (41573050)
  • 【文献出处】 Chinese Physics C ,中国物理C(英文) , 编辑部邮箱 ,2026年04期
  • 【分类号】O571
  • 【下载频次】1
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