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氘核削裂反应理论研究及其进展
2021年
氘核削裂反应作为单核子转移反应的一种,在原子核的单粒子结构研究中一直起着重要的作用。同时,作为典型的三体核反应,它也是直接核反应理论研究的一个重要研究对象。本文简述了氘核削裂反应的研究历史,侧重介绍其反应理论的演进,以及平面波玻恩近似(Plane Wave Born Approximation,PWBA)、扭曲波玻恩近似(Distorted Wave Born Approximation,DWBA)、连续态离散化耦合道理论(Continuum Discretized Coupled Channels,CDCC)、绝热波近似理论(Adiabatic Wave Approximation,ADWA)和法捷耶夫方程组(Faddeev equations)方法之间的差别与联系。本文讨论了当前及未来氘核削裂反应理论研究的若干热点问题,包括中高能条件下的氘核削裂反应、转移到剩余核连续态的理论、色散光学势以及非定域光学势在氘核削裂反应中的应用等。本文展示了我们对中高能条件下的氘核削裂反应理论计算的一些初步成果。
许祎萍庞丹阳楼建玲
关键词:光学势
Effects of relativistic kinematics in heavy ion elastic scattering
2014年
Relativistic corrections to the reaction kinematic parameters were made for elastic scattering of ^6Li, ^12C and ^40Ar from ^40Ca,^90Zr and ^208Pb targets at incident energies between 20 and 100 MeV/nucleon. The results of optical model calculations show that the efects of such corrections are important when describing the angular distributions of elastic scattering cross sections for heavy ion scattering at incident energies as low as around 40 MeV/nucleon. The efects on the total reaction cross sections on the other hand, were found to be small within the energy range studied when the optical model potential is fixed.
庞丹阳
Systematic CDCC calculations for ~11Be+p elastic scattering
2016年
Continuum discretised coupled-channels(CDCC) method with a ^(10)Be(0^+) + n two-body cluster model is applied to systematically analyze the elastic scattering of the halo nucleus ^(11)Be from the proton target at various incident energies below 100 MeV/nucleon.Using the renormalized ^(10)Be- p potential deduced from the ^(10)Be+ p elastic scattering data, the differential cross sections of ^(11)Be + p scattering are well reproduced by the CDCC calculations without any further adjustment parameters, demonstrating the applicability of this approach for describing the scattering of exotic nuclei based on the scattering of the less exotic core nuclei.
Jie ChenJian Ling LouDan Yang PangYan Lin Ye
关键词:弹性散射入射能量质子晕核
Collective multipole excitations of exotic nuclei in relativistic continuum random phase approximation
2013年
The isoscalar and isovector collective multipole excitations in exotic nuclei are studied in the framework of a fully self-consistent relativistic continuum random phase approximation (RCRPA). In this method the contri- bution of the continuum spectrum to nuclear excitations is treated exactly by the single particle Green's function. Different from the cases in stable nuclei, there are strong low-energy excitations in neutron-rich nuclei and proton-rich nuclei. The neutron or proton excess pushes the centroid of the strength function to lower energies and increases the fragmentation of the strength distribution. The effect of treating the contribution of continuum exactly is also discussed.
杨丁曹李刚马中玉
关键词:CONTINUUM
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