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46,50Ti+124Sn熔合反应中耦合道效应的理论研究(英文)

Theoretical Study of the Coupled-channel Effects in Fusion Reactions 46,50Ti+124Sn

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【作者】 王兵赵维娟赵恩广周善贵

【Author】 WANG Bing;ZHAO Weijuan;ZHAO Enguang;ZHOU Shangui;Department of Physics, Zhengzhou University;CAS Key Laboratory of Frontiers in Theoretical Physics, Institute of Theoretical Physics,Chinese Academy of Sciences;Center of Theoretical Nuclear Physics, National Laboratory of Heavy Ion Accelerator;School of Physical Sciences, University of Chinese Academy of Sciences;Synergetic Innovation Center for Quantum Effects and Application, Hunan Normal University;

【机构】 郑州大学物理工程学院中国科学院理论物理研究所中国科学院理论物理前沿重点实验室兰州重离子加速器国家实验室原子核理论中心中国科学院大学物理科学学院湖南师范大学量子效应及其应用协同创新中心

【摘要】 近库仑位垒重离子俘获与熔合是一个典型的多位垒穿透过程。在本征道的理论框架下,多反应道的耦合会使得单个位垒分离成一系列的分立位垒。基于位垒分布的思想,我们最近发展了一个经验的耦合道(ECC)模型,并系统地研究了220个反应体系的俘获激发函数。最近,实验报道了熔合反应46,50Ti+124Sn俘获激发函数的测量结果。本文将简要介绍该ECC模型,并结合通用熔合函数(UFF)的约化方法,利用该模型研究熔合反应46,50Ti+124Sn中的耦合道效应。UFF的约化结果表明,相比于50Ti+124Sn,46Ti+124Sn的垒下俘获截面有额外的增强。ECC模型成功地再现了实验测得的俘获激发函数,并表明,46Ti+124Sn垒下俘获截面的额外增强来源于正Q值的中子转移效应。

【Abstract】 The heavy-ion capture and fusion processes at energies near the Coulomb barrier can be treated as a multi-dimensional barrier penetration problem. In the eigenchannel framework, the couplings to other channels split the single potential barrier into a set of discrete barriers. Based on the concept of the barrier distribution, we have developed an empirical coupled-channel(ECC) model and performed a systematic study of capture excitation functions for 220 reaction systems. Recently, an experiment was reported in which the capture excitation functions of reactions46,50Ti+124Sn were measured. In this work, we review the ECC model briefly and use this model together with the universal fusion function(UFF) prescription to study the coupled-channel effects in fusion reactions46,50Ti+124Sn. The reduced fusion functions show that the sub-barrier capture cross sections of46Ti+124Sn exhibit an extra enhancement as compared with those of50Ti+124Sn. The results from the ECC model reproduce the experimental capture excitation functions successfully and show that this extra enhancement of the sub-barrier cross sections for46Ti+124Sn can be ascribed to the positive Q value neutron transfer effect

【基金】 Natural Science Foundation of China(11475115,11525524,11621131001,11647601,11711540016,11705165);Knowledge Innovation Project of Chinese Academy of Sciences(KJCX2-EW-N01);Key Research Program of Frontier Sciences of CAS~~
  • 【文献出处】 原子核物理评论 ,Nuclear Physics Review , 编辑部邮箱 ,2017年03期
  • 【分类号】O571.5
  • 【下载频次】33
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