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1.
The intermediate resonances observed in the inelastic 12C + 12C cross sections to the single and mutual 21+(4.43 MeV) excitations and the single 31? (9.64 MeV) excitation are studied by the coupled-channel method with the use of the coupling interaction derived by the folding procedure between 12C and 12C. It is shown that the model is successful in reproducing the gross structures of the inelastic cross sections and especially the correlated resonance energies of the inelastic channels. The inelastic resonances are shown to be due to the molecular resonances in an adiabatic potential between two 12C, which reproduces correctly the coupled channel resonances.  相似文献   

2.
Using the out-of-plane γ-ray particle coincidence method we have measured the spin alignment Pzz of excited 12C(2+) nuclei from 12C+12C inelastic scattering in the energy range 16 MeV ? Ecm ? 33 MeV.Pzz varies strongly as a function of energy and angle. The correlation of resonant structures in the cross section with maxima of the alignment is particularly clear in mutual inelastic scattering and in θcm = 90° single inelastic scattering.  相似文献   

3.
Strong correlated resonances have been found in the inelastic and transfer channels of 12C + 14C at energies above the Coulomb barrier. It is argued that the system may be sufficiently transparent to the grazing partial waves to enable predicted resonant effects to be observed.  相似文献   

4.
The elastic scattering, inelastic scattering, single-neutron transfer reactions 13C(17O, 16O) 14C, 13C(17O, 18O)12C and 13C(17O, 18O2+, 1.98)12C, and seven other exit channels which involve 7Li, 9Be, 11B and 15N have been measured for the system 17O+13C at 12.9 and 14 MeV c.m. It is shown that all reactions mentioned above have significant contributions from compound nuclear decay, following fusion of projectile and target.  相似文献   

5.
An array of eight detectors has been developed for identifying the particle unstable 8Be nucleus from nuclear reactions with high detection efficiency. Absolute cross sections have been measured for the reaction 12C(12C, 8Beg.s.)16O to the ground state and to several excited states in 16O. Excitation functions at seven angles from 15° to 45° (lab) in 5° steps have been measured for bombarding energies between E12C(lab) = 35 and 69 MeV. Excitation functions were obtained for the following states in the residual nucleus 16O which were found to be strongly populated: g.s.(0+); 6.1 MeV (0+, 3?); 6.9 MeV (2+); 10.4 MeV (4+); 11.1 MeV (4+); 14.7 MeV (6+,…) and 16.3 MeV (6+,…). The energy range is covered in 250 keV (c.m.) steps; at certain energy ranges in 125 keV or 50keV steps. All excitation functions exhibit a strong energy dependence of the cross section; pronounced gross structures with superimposed fine structures, similar to those observed for 12C+12C elastic and inelastic scattering at these energies, are observed. At 19.3 MeV, where resonant structures were observed in the reactions 12C(12C, p)23Na, 12C(12C, n)23Mg and 12C(12C, d)22Na, no resonance is found for the reaction studied here. At 60, 61 and 63 MeV angular distributions have been measured in 1° and 2.5°(lab) angular steps. The excitation functions have been analyzed in terms of Ericson fluctuations and cross-correlation functions.  相似文献   

6.
Differential cross sections for 12C + n elastic and inelastic scattering and for the 2C(n, α) 9Be reaction, together with high resolution total cross-section data were analyzed by means of a multilevel multichannel R-matrix program to determineJ, π, and γλc for states in 13C up to Ex = 13.5MeV. Good overall fits to the data were obtained throughout this large energy range. Spin and parity assignments for thirteen states above Ex = 9.5MeV for which there had been either no previous Jπ assignments or only tentative assignments have been made in this study. The present results are in good agreement with previous analyses and model calculations.  相似文献   

7.
Angular distributions of neutron polarization from the 14C(p, n)14N and 11B(α, n)14N reactions have been studied for the particle energies Ep = 1.788, 2.025, 2.272 and 2.450 MeV, and Eα = 2.049 MeV. The polarization was derived from the left-right asymmetry induced by elastic scattering from 4He. Together with existing measurements of angular distributions and total cross sections for several reaction channels leading to 15N with an excitation energy between 11.5 and 12.5 MeV, these data were used to deduce from R-matrix analysis a set of resonance parameters for the 15N levels in this energy range.  相似文献   

8.
The 13C(6Li, t)16O reaction has been studied at 34 MeV. Selective population of narrow states is observed up to 21 MeV excitation in 16O. This reaction populates strongly both unnatural-and natural-parity states that have little or no 12C + α0 width. The measured angular distributions are compared with Hauser-Feshbach and finite-range DWBA calculations. Reasonable agreement with the DWBA calculations is found for most of the states strongly populated. The widths of the narrow states populated in the 16–20 MeV excitation region are presented. Comparison of the present data with that from medium-energy inelastic scattering and other multiparticle transfer reactions is made.  相似文献   

9.
The elastic and inelastic scattering of 14C at 51 MeV from targets of 40Ca, 56Fe, 60Ni, 66Zn and 88Sr has been measured using a Q3D spectrometer. The 14C-nucleus potentials have been derived by optical-model analysis of the observed elastic scattering; the inelastic scattering differential cross sections were interpreted in the distorted-wave Born approximation and also in the coupled-channels approach. The analysis yields 14C-nucleus potentials that closely resemble 12, 13C and 16O potentials.  相似文献   

10.
J. Cook 《Nuclear Physics A》1985,445(2):350-366
Coupled-channels calculations are presented tor elastic and inelastic 6Li + 12C scattering at Ec.m. = 16 MeV and 20 MeV, and for 6Li + 16O at 18.7 MeV. Excitation of states within 6Li, 12C and 16O are treated with rotational, rotation-vibration and vibrational models only. The 3+6Li and 2+12C states are strongly coupled to the elastic scattering and reduce the strengths of both the real and imaginary potentials. The 3?16O state reduces only the strength of the imaginary potential. All other states are weakly coupled and have little effect on each other or the potential. The data are reasonably well described, with there being some preference for the 3? state in 12C to be K = 0. Excitation of the 02+ state in 12C requires a combination of β-vibration and monopole breathing-mode form factors. The deformation lengths found are in poor agreement with those deduced from electron or proton scattering.  相似文献   

11.
Excitation functions of the reactions 12, 13C+48Ti and 30Si+30Si were measured by in-beam γ-ray spectrometry in the energy ranges 20–60 MeV for the 12, 13C induced reactions and 55–126 MeV for the 30Si+30Si reaction. Light-particle angular distributions were measured at 46 MeV and 47.5 MeV for the 13C and 12C induced reactions. Measurements of elastic scattering angular distribution and particle-γ coincidences were carried out for the system 13C+48Ti at 46 MeV. The limitation to complete fusion detected for the system 30Si+30Si appears to be related to entrance channel effects and is well reproduced by a barrier penetration calculation using the KNS potential. The angular distribution measurements carried out for the 12C+48Ti and 13C+48Ti systems allowed to identify an incomplete fusion mechanism with emission of direct α-particles before the formation of a fully equilibrated system.  相似文献   

12.
Excitation functions for the reaction 24Mg(16O, 12C)28Si(g.s., 2+1) were measured at 5°(lab) in the energy range 32 < Ec.m. < 49 MeV. Although the resonant structure, previously observed at lower energies, becomes progressively weaker, three new correlated maxima have been observed near Ec.m. = 37.5, 40.2 and 43.5 MeV. Angular distribution measurements at these energies yield spin assignments, from P2j(cos θ) comparisons, of 27, 29 and 31, respectively. Attempts to find a consistent optical-model fit to the elastic scattering in the entrance channel and an exact finite-range DWBA fit to the four-nucleon transfer reaction in this energy range were unsuccessful. Such a failure is to be expected if strong couplings between the elastic channel and inelastic channels of either the initial or final system are important. The features of the resonance phenomena in the transfer reaction are discussed within a band crossing model framework.  相似文献   

13.
The inelastic scattering of 12C and 13C projectiles has been studied on 63Cu at 45 MeV incident energy. The core-excited states (based on 2+ in 62Ni) show individual differences in the angular distributions which are due to second-order couplings (transfer and inelastic transitions). However, the sum of the core-excited states yields the same cross section as observed in the inelastic scattering of 12C at 48 MeV on 62Ni (2+).  相似文献   

14.
The reaction channels of the system 16O + 16O with outgoing heavy particles from lithium to magnesium have been measured using a ΔE-E telescope. Excitation functions from 49 to 65 MeV at θLab = 30° and angular distributions from θLab = 10° (20°) to 50° at ELab = 51.5 MeV are presented for the strong transitions. The excitation function of the 12C-20Ne (4.25 MeV) channel shows a pronounced regular cross structure with peaks at 52 and 60 MeV. A selective excitation of certain states in the inelastic scattering and the 12C-20Ne channel is observed; the yields of the other heavy-ion channels being weaker by at least one order of magnitude. An explanation of this phenomenon is given by considering the angular momentum matching between entrance and exit channels. Furthermore it is shown that no strong dependence of the cross sections on the transferred angular momentum or on the nuclear structure of the final states is observed. Possible implications of these results on the reaction mechanism are discussed.  相似文献   

15.
16.
The low-J resonances in the Coulomb barrier region of the 12 C+12C system are investigated in the framework of a microscopic cluster model basis including 12C+12C, α+ 20Ne, and su8 Be+ 16O fragment decompositions. Calculations are carried out in an orthogonality condition model approximation in which Pauli-forbidden components are properly excluded from the basis but in which the interaction among cluster fragments is approximated by a local potential, obtained from a gaussian NN interaction by a folding procedure leading to both spherical and Q · Q terms. Only minor adjustments of overall strength and fall-off parameters are introduced to gain a consistent picture of the low-energy spectrum in the separate rearrangement channels. The basis includes cluster relative motion excitations with oscillator quanta from 12 to 20 and is not quite rich enough to give a detailed quantitative comparison between theory and experiment. Predicted excitation energies are too high by ~ 3 MeV and predicted 12C partial widths are too small to indicate a well-developed surface-peaked molecular character; but it does appear possible to identify a 5 MeV region as the potential seat of the 0+, 2+, 4+ resonances. The number and approximate spacing of the resonance fine structure components are in agreement with experiment.  相似文献   

17.
18.
在Glauber多重散射理论框架下,使用跃迁密度方法和三种N湮没势,计算了46.8MeV的反质子在12C上的非弹性散射微分截面. 理论曲线与实验数据符合得较好. 关键词: Glauber理论 反质子 非弹性散射 湮没势 跃迁密度  相似文献   

19.
Angular distributions for 16O + 24Mg and 12C + 24Mg elastic and inelastic (2+, 1.37 MeV state in 24Mg) scattering have been measured at energies spanning the Coulomb barrier. Apart from the structure typical of strong destructive Coulomb-nuclear interference, the data exhibit some additional specific features. Coupled channel calculations were performed, along with DWBA calculations to analyse the data using fixed coupling strengths deduced from the results of Coulomb excitation work. The importance of higher-order effects such as reorientation, is demonstrated.  相似文献   

20.
Angular distributions for the elastic scattering of deuterons by 14C were measured at nine energies between Ed = 4.2 and 10 MeV. Excitation functions were taken in 50 keV steps from Ed = 4 to 10 MeV. A resonance was observed at Ed = 4.5 MeV, which corresponds to an excitation energy of 14.41 MeV in 16N. An analysis using an optical model plus a single-level formula derived from the R-matrix formalism yields an l-value assignment of l = 4 for this resonance. Of the three Jπ values allowed for l = 4 (Jπ = 3+, 4+, 5+), the value of Jπ = 3+ is found to be slightly preferred. Possible identification of this resonance with an analog in 16O is discussed. The angular distributions measured at off-resonance energies were analyzed with an optical-model potential which has a surface-peaked imaginary well. The energy dependence of the real and imaginary well depths are explicitly determined in the present work for Ed = 4 to 10 MeV. The best-fit optical-model parameters obtained from the present study are compared to those from the 14N(d, d)14N work.  相似文献   

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