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1.
利用同位旋相关的Boltzmann-Langevin方程研究了^40Ca ^58Fe和^40cA ^58Ni两个反应系统在53,100,1506 200MeV/u入射能量下对心碰撞的径向膨胀流,发现对于丰中子系统^40Ca ^58Fe的径向膨胀流系统性地小于稳定系统^40Ca ^58Ni的径向膨胀,在假定轰击能量与反应体系的压缩密度呈抛物线关系时,能够解释入射能量和径向膨胀流之间呈现的直线关系,提取了出现径向膨胀流的轰击能量阈值,发现对丰中子系统^40Ca ^58Fe得到的能量阈值小于稳定系统^40Ca ^58Ni所得到的能量阈值。  相似文献   

2.
中能重离子碰撞中集体流的同位旋效应   总被引:5,自引:4,他引:1  
在同位旋相关的量子分子动力学模型的基础上,利用Skyrme–Hartree–Fock计算所得的中子、质子密度,同时利用费米气体模型得到相应的中子、质子费米面,抽样出稳定的58Fe和58Ni初始核.仔细研究了55MeV/u 58Fe+58Fe和55MeV/u58Ni+58Ni两个反应中集体流的同位旋效应.在不同碰撞参数下对不同类型的碎块,观察到丰中子反应系统58Fe+58Fe比58Ni+58Ni有更强的集体流,并能与实验结果定性符合.同时,研究了同位旋相关的对称能与核子–核子碰撞截面对集体流的影响.  相似文献   

3.
用同位旋相关的Boltzmann-Langevin方程研究了在入射能量为28.7MeV/u下,不同弹核14O,16O和18O轰击不同靶核7Be和9Be的反应,计算了生成碎片的产生截面,发现用丰中子(缺中子)炮弹或丰中子(缺中子)靶进行反应,所得到的产物均有丰中子(缺中子)的碎片出现.同位素分布宽度和峰位与入射体系密切相关,产生碎片的电荷数越接近入射弹核的电荷数,则同位素分布的宽度越大,峰位偏离β稳定线值越远,其同位旋效应越明显.  相似文献   

4.
在同位旋相关的量子分子动力学模型框架下,通过分析中间快度的方位角分布研究了40MeV/u 58Fe+58Fe和58Ni+58Ni反应体系在不同碰撞参数下的转动集体流,并且半经典地计算了转动观测量.发现丰中子体系(58Fe+58Fe)具有较强的转动集体流,这种现象在半周边碰撞中更加明显.转动集体流的同位旋相关性主要来自于核子–核子碰撞截面的同位旋相关性和对称能的影响.  相似文献   

5.
中能重离子碰撞中平衡能的同位旋效应   总被引:1,自引:0,他引:1  
利用同位旋相关的量子分子动力学模型,计算了58Fe+58Fe和58M+58Ni两个反应系统在不同碰撞参数下的平衡能.观察到在不同碰撞参数下丰中子反应系统58Fe+58Fe比58Ni+58Ni有更高的平衡能.计算结果能与实验数据定性符合.  相似文献   

6.
径向膨胀流的同位旋效应   总被引:2,自引:1,他引:1  
利用同位旋相关的量子分子动力学模型,研究了124Ba+124Ba和124Sn+124Sn两个系统在不同入射能量下对心碰撞的径向膨胀流.发现丰中子系统124Sn+124Sn的径向膨胀流系统性地小于系统124Ba+124Ba的径向膨胀流.同时发现这种差别主要来自于核子–核子碰撞截面的同位旋相关性而几乎与对称能无关.  相似文献   

7.
用屏栅电离室测量了入射中子能量为5.1MeV的58Ni(n,α)55Fe核反应的α粒子角分布,238U裂变电离室作中子注量率的测量,测得该能点58Ni(n,α)55Fe的总截面为(47.4±5.0)mb.用中国核数据中心推荐的理论计算程序UNF计算了在1—8MeV能区58Ni(n,p)58Co,58Ni(n,α)55Fe的反应截面和入射中子能量为5.1MeV的58Ni(n,α)反应角分布.理论和测量数据的比较说明,用复合核模型来描写该能点的角分布是可行的.  相似文献   

8.
30MeV/u 40Ar+58,64Ni和115In反应中中等质量碎片的角分布   总被引:1,自引:1,他引:0  
在5°—140°范围内测量了30MeV/u 40Ar束流轰击不同靶核(58Ni、64Ni、115In)后出射的中等质量碎片(IMF,Z=3—19)的角分布.用指数分布函数dσ/dΩ=N·exp(–θ/α)对出射碎片角分布分角区做了拟合.对3个反应系统分别提取出与相互作用时间有关的衰减因子α和与发射源强度有关的物理量N,讨论了α与N在不同角区与反应系统和出射IMF电荷数的关系.考察了角分布与同位旋自由度和反应系统对称性的关系.  相似文献   

9.
用13单元望远镜探测器阵列测量了30MeV/u 40Ar +112,124Sn反应中小角关联粒子,由两体符合事件提取了αα关联函数.用三体弹道理论模型MENEKA计算本底关联函数,用Monte Carlo方法计算探测效率函数,在扣除本底产额并考虑探测效率的修正后,对不同同位旋反应系统40Ar +112Sn和40Ar+124Sn提取的相对态布居核温度分别是4.18±0.25 0.21MeV和4.10±0.22 0.20MeV ;考察态布居核温度和粒子能量的关系时,观察到两个系统的发射温度均随着粒子能量的增加而降低,缺中子系统40Ar +112Sn中由低能时的5.13±0.30 0.2 6MeV降低到高能时的3.87±0.37 0.29MeV ,丰中子系统40Ar+124Sn中由低能时的5.39±0.30 0.26MeV降低到高能时的3.32±0.28 0.23MeV .用激发热核衰变过程的同位旋选择性对这种同位旋相关性进行了解释.  相似文献   

10.
35MeV/u 36,40Ar+112,124Sn反应中,在前角5°和20°观测到丰中子核与稳定核的产额比随粒子出射动能的增加而减小,而缺中子核与稳定核的产额比随动能的增加而增加.对于某种元素,随着动能的减小,其平均中质比逐渐由弹核N/Z向靶核N/Z过渡.这些现象表明在这样的入射能量下,周边或近周边碰撞过程中同位旋自由度没有完全达到平衡.这种行为对两个靶核系统是相似的,但是同位素产额比的绝对值在5°没有靶核相关性,而在20°处却表现出明显的靶核相关性.  相似文献   

11.
The giant quadrupole resonance of the fused system obtained in a 40Ca + 40Ca reaction is investigated in the framework of the TDHF approximation. A large splitting of the resonance due to the deformation of the composite system is observed. These results are confirmed by a direct fluid-dynamical calculation of the resonance. An estimation of the energy stored in the resonance is also presented.  相似文献   

12.
D. Baye  Y. Salmon 《Nuclear Physics A》1979,331(1):264-268
Elastic 16O + 40Ca phase shifts are calculated using a generator-coordinate method. A rotational band of molecular resonances is found with a rotational constant of about 30 keV. The width of these resonances should make them observable in the energy range 30 to 50 MeV. These features can be approximately reproduced by a shallow local potential. Properties of the imaginary part of the optical potential are discussed qualitatively. The optical potential should be transparent in a window of J-values comprised between about 16 and 25. Odd-even effects are shown to be negligible in the real part of the potential but might be important in its imaginary part. A possible confirmation of these predictions is found in an experimental excitation function.  相似文献   

13.
Excitation functions have been measured for 40Ca(p, p)40Ca, in the energy range from Ep = 2.35 to 4.85 MeV at four angles. The R-matrix formalism for multilevel cross sections was used to analyse the data; spins, parities, proton widths and reduced widths were extracted for thirty levels. Several new spin values have been deduced. A detailed comparison of the levels in the mirror system 41Ca?41Sc is given.  相似文献   

14.
Low-lying positive parity levels of calcium-40 are discussed in the framework of the shell model. An inert 32S core is assumed, and Od32 and Of72 are taken as active orbits. As effective interactions we assumed those used by Federman and Pittel. Effect of many-particle and many-hole configurations up to 8p–8h states are shown to be important even for the very low-lying 0+ states.  相似文献   

15.
The 40Ca(α, 3He) reaction has been studied at 36 MeV incident energy. About fifty levels have been observed up to 7.1 MeV excitation energy and angular distributions were measured from 6–60° using a split-pole spectrometer. A local zero-range DWBA analysis has been carried out, and the deduced l-assignments and spectroscopic factors are compared with those obtained from previous neutron stripping experiments. Core-excited states in 41Ca with a [3? ? f7,2], [2+ ? f7,2] and [5? ? f7,2] component previously observed in inelastic scattering experiments, are selectively excited by the (α, 3He) reaction. Their angular distributions are compared with coupled-reaction-channel calculations, assuming a pure two-step reaction mechanism. The agreement between theory and experiment may be considered as rather satisfactory for a number of levels. In particular the 12+and32+ levels and the high-spin states with Jπ = 92?, 112+, 152+and172+ are successfully described within the framework of the weak-coupling model.  相似文献   

16.
Excitation functions for the 40Ca(p, γ)41Sc reaction have been measured at 0° and 90° in the proton energy range Ep = 2.1–3.1 MeV. The experimental results have been interpreted in terms of the direct capture process to the first excited state of 41Sc. The direct capture transition to the ground state has been observed only at a few proton energies. The spectroscopic factor of the first excited state in 41Sc has been found to be 1.0 ± 0.3. The direct capture cross section to the ground state is consistent with the spectroscopic factor reported from stripping reactions.  相似文献   

17.
The isospin forbidden transition 1? (6.95 MeV) → 0+ (g.s.) in 40Ca is explained within a model that mixes isospin through single-particle energy differences and the two-body Coulomb interaction. There is no need to introduce an isospin non-conserving part of the nucleon-nucleon interaction to explain this anomalously fast transition.  相似文献   

18.
The differential cross sections for the elastic scattering of 3He ions on targets of 40Ca and 58Ni have been measured at incident energies of 27.7, 51.4, 73.2 and 83.5 MeV. The results of optical model analyses showed that only one unique potential (JR ≈ 330 MeV · fm3) with a surface absorptive term can provide acceptable fits to the large angle elastic scattering cross sections at 83.5 MeV. The particular geometrical set found at 83.5 MeV could not, however, give an adequate fit to the data with energy less than 40 MeV. Subsequent analyses indicated that a break in the energy dependence of the real potential is observed for the low energy data. Explicit energy dependent terms were obtained by fitting all the data simultaneously. These phenomenological potentials were also compared with the folded nucleon-nucleus potential. The influence of the α-particle channels on the elastic scattering of 3He ions at 83.5 MeV was also examined.  相似文献   

19.
20.
Energy levels in 40Ca up to 10.2 MeV have been studied in the neutron pickup reaction 41Ca(τ, α)40Ca with 20 MeV bombarding energy. Thirty excited states have been identified and angular distributions have been measured in the interval from 5° to 40° by means of a split-pole magnetic spectrometer. The angular distributions together with DW calculations have been used to extract ln values and spectroscopic factors. The ln = 2 strength distribution for the f72d32?1 particle-hole levels is compared to the lp = 3 strength distribution from pr stripping data.  相似文献   

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