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1.
The cross sections for the 10B(13C, 12C)11B neutron-transfer reaction, leading to the 11B 4.45 and 6.74 MeV and 12C 4.44 MeV excited states, and for 13C + 10B fusion have been measured by the characteristic and total γ-ray yield methods, respectively, over the energy (c.m.) interval 2.4–5.8 MeV. For 13C + 11B, with no transfer reactions present, the fusion cross sections have been measured between Ec.m. = 2.3 and 6.4 MeV. The fusion cross sections for 13C + 10B and 13C + 11B are found to be almost equal and slightly enhanced with respect to those for 12C + 10B and 12C + 11B.  相似文献   

2.
Angular distributions have been measured for the 32S(16O,12C)36Ar reaction at 45.5 MeV leading to excited states between Ex, = 0 and 8 MeV. Experimental cross sections are compared with exact finite-range DWBA calculations in combination with extensive shell-model calculations, which include sd- and fp-shell configurations. Transitions to low-energy positive-parity states and bound negative-parity states are well reproduced. The calculations, however, fail to describe some high-energy positive-parity states. Calculations with a complete cluster expansion for the four transferred nucleons give about 50% larger cross sections, but can not explain the observed discrepancies. Possible interference of reaction processes other than direct α-transfer and special structure effects are discussed.  相似文献   

3.
The 12C(12C, α)20Ne reaction is studied near Ec.m. = 15 MeV. Angular distributions for three energies and excitation functions at θlab = 30° over an energy range Ec.m. = 14.5?15.4 MeV for about 20 levels in 20Ne (Eex = 0–13 MeV) are examined. The statistical analysis yields the results that a correlated resonance is present at Ec.m. = 14.75 MeV. A nonstatistical contribution to the reaction is also apparent when energy-averaged cross sections are compared with the Hauser-Feshbach model predictions. Strong population of the 0+3 band in 20Ne is observed.  相似文献   

4.
Absolute γ-ray yields from characteristic low-lying levels in nuclei produced in the 13C+ 13C reaction have been measured from Ec.m. = 4.0 to 15.8 MeV using an intrinsic germanium detector. Statistical-model calculations of the decay modes of the compound nucleus have been used to deduce absolute cross sections for the production of the observed residual nuclei and to determine the fusion cross section. Consistency checks on the adopted procedure lead to an estimated absolute uncertainty of ± 15 % on the deduced cross sections. Over the energy range covered, no striking evidence has been found for either broad single-particle resonances or for narrow non-statistical resonances in the cross sections for individual channels. Comparisons are made with optical-model calculations of the reaction cross section and with different expressions for the fusion cross section.  相似文献   

5.
We have studied elastic scattering, inelastic scattering and several transfer channels of the systems 14C + 14C and 14C + 12C over a wide range of energies up to Ec.m. = 35 eMeV and 32 MeV, respectively. The reaction channels were identified by means of kinematic coincidences between solid-state detectors, γγ coincidences were measured to determine cross sections for mutual inelastic scattering of 14C + 14C.Pronounced regular gross structures, similar to those found for 16O + 16O, are observed in the elastic excitation function of 14C + 14C at θc.m. = 90°, The angular distributions measured at the energies of the maxima and an optical-model analysis suggest that one or a few surface partial waves dominate the scattering behaviour. Correlated structure of narrower width is found in the inelastic channels and, to a lesser degree, in the transfer channels which appear with rather small cross sections.In 14C + 12C elastic scattering the gross structures are strongly fragmented, in contrast to 14C + 14C but similar to 12C + 12C. While the 12C(2+) excitation is very weak, the observed strengths of the 14C(3?) excitation and of neutron transfer point to a substantial role of these channels as coupling partners to the elastic configuration and to their influence on the elastic scattering behaviour. A correlated intermediate structure is observed near 23.5 MeV, where a dominance of l = 18 is suggested by the elastic scattering angular distribution. This unexpectedly high l-value exceeds lgraz at this energy by at least two units of ?.  相似文献   

6.
The mechanisms involved in the production of fast α-particles in 12C-induced reactions have been studied for the 12C + 208Pb system at the bombarding energies of E12c = 132, 187 and 230 MeV. Absolute cross sections for the reactions 208Pb(12C. 12C1→α + 8Be), 208Pb(12C, 8Be(g.s.)) and 208Pb(12C, 8Be(2.94 MeV)) have been determined by coincidence measurement of two or three correlated α-particles. Inclusive α-particle production cross sections were also measured at E12c = 187 MeV. It is found that the inelastic process (12C, 12C1→α + 8Be) does not contribute significantly to fast α-particle production but that the production of 8Be by projectile fragmentation is an important source of α-particles. At the highest bombarding energy (230 MeV) it appears that the 12C → 3α fragmentation reaction becomes more prominent at the expense of the 12C→α + 8Be fragmentation channel.  相似文献   

7.
The energy dependence of the fusion cross section has been measured over the range Ec.m. = 3.05–6.88 MeV by detecting the γ-rays from residual nuclei in a 4π geometry. Analyzing the 1.37 MeV photopeak, originating from 24Mg 1.37 MeVg.s. transition, the cross sections for 24Mg+2n channel were also deduced. The measured fusion cross sections have been compared with those for 12C + 12C and 12C + 13C systems and found to be significantly different. For 13C+13C the fusion cross sections agree with the standard optical-model prediction down to the lowest measured energies, while for 12C + 12C and 12C + 13C they are, at the lowest energies, too low. It is suggested that the unpaired valence nucleons facilitate fusion at energies well below the Coulomb barrier.  相似文献   

8.
Excitation functions at 7° (lab) have been measured from Ec.m. = 5.1 to 11.4 MeV in approximately 114 keV steps for 15 groups of final states in 17O populated by the 12C(9Be, α) reaction. Statistical tests have been used to locate possible non-statistical structure in the excitation functions. Possible anomalies were found near Ec.m. = 6.3, 7.5, 8.9 and 9.7 MeV. Angular distributions were measured at Ec.m. = 9.20, 9.71 and 10.23 MeV for the three lowest excited states in 17O. The data have been compared with Hauser-Feshbach calculations in addition to the following reaction mechanisms: compound plus a single resonance, compound plus interfering resonances and compound plus direct reactions.  相似文献   

9.
The differential cross section of the elastic scattering 3He(4He, 4He)3He has been measured at center of mass energies Ec.m. between 28 and 44 MeV and in the c.m. angular range of 20° to 160°. The 3He polarization P at Ec.m. = 42 MeV and θc.m. = 132° was determined in a double scattering experiment. The analysis of the cross section data with the optical and the cluster model has been described previously. The phase shifts obtained in the cluster model calculations were used as starting values in a phase shift analysis. The resulting final real phase shifts and elasticity parameters give good fits to the cross section data. At 44 MeV the elasticity parameters show a pronounced odd-even dependence on angular momentum which had been found already in the case of the real phase shifts. The result of the polarization experiment |P| < 0.22 is consistent with cluster model predictions.  相似文献   

10.
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   

11.
The 24Mg(12C,α)32S reaction was investigated in the energy range Ec.m. = 11.9–19.4 MeV by measuring excitation functions of the α0 and α1 groups. Angular distributions (θc.m. = 12–97°) were also measured at a number of energies. The excitation functions were subjected to a statistical analysis by means of evaluating correlation and deviation functions; no statistically significant anomalies were found. The α0 angular distributions display fairly high angular-momentum selectivity as pairs of Legendre polynomials provide acceptable fits to most of them: however, only one, at Ec.m. = 18.1 MeV, is strongly dominated by a single partial wave, l = 11. Excitation functions as well as angular distributions of both α0 and α1 cross sections were found to be in good qualitative agreement with Hauser-Feshbach calculations throughout the energy range studied. Thus, the analysis of the data shows that intermediate resonant structures, if present, are weak and interfere strongly with the statistical compound-nucleus background, which effectively prevents their clear observation and identification in the present study.  相似文献   

12.
The (α, 12C) reaction has been studied on a variety of nuclei, A = 16 to 40, at Eα = 90.3 MeV. The data indicate a rapid fall-off of cross sections with increasing target mass, approximately as At?5 ± 1. This and other systematics are used to estimate cross sections for multi-α-cluster transfer reactions in heavy nuclei and suggest σT < 10?34 cm2 consistent with present experimental limits. The data for 24Mg(α, 12C)16O has been studied in more detail and indicates a selective population of final states including 16O g.s., with oscillatory angular distributions in some instances. Finite-range distorted-wave Born approximation calculations for direct 8Be pickup have been performed utilizing cluster overlap amplitudes obtained with zero-order SU(3) wave functions. The calculations are in qualitative, and often quantitative, agreement with shapes and absolute magnitudes of the measured angular distributions although the cross sections for certain α-cluster states (2+, Ex ≈ 7 MeV; 4+, Ex ≈ 10.3 MeV) are greatly overestimated with this model. Other more complicated mechanisms, such as successive α-transfer, cannot be excluded. The systematics of the calculated 8Be cluster overlaps and the calculated and measured (α, 12C) cross sections are investigated, and implications for multi-α-cluster transfer reactions are discussed.  相似文献   

13.
The angular distributions of the energy spectra of the light charged particles (p, d and α) from the 9Be + 28Si reaction have been measured in the energy range 12 ≦ Elab ≦ 30 MeV. The particle evaporation spectra and the angular distributions were analyzed with a spin dependent statistical model. Angular distributions of 9Be ions elastically scattered on 28Si have been measured at the energies 12 MeV, 17 MeV, 23 MeV and 30 MeV and were analysed, together with previously measured cross sections, with the optical model. The fusion cut-off angular momentum lfus(E), the fusion cross section σfus(E) and the ratio σfus/σROM(E) were deduced. The excitation function for fusion was analyzed with the Glas and Mosel model. The parameters obtained from the fusion excitation function were compared with the corresponding ones from the 9Be + 28Si optical-model interaction potential.  相似文献   

14.
Fusion cross sections for the reaction 40Ar + 110Pd have been measured in the bombarding energy range 164–262 MeV. Evaporation residues and fission fragments have been detected by ΔE-E telescopes. We compare the fusion cross sections to various theoretical models with special attention to the high-energy data. An analysis is also given for entrance-channel spin zones for evaporation residues and fission.  相似文献   

15.
The γ-decays of eleven resonances in the 28Si(α,γ)32S reaction below Eα = 3.83 MeV have been studied using a large Ge(Li) detector. Results for branching ratios differ considerably from previous NaI work. The previous discrepancy in radiative strengths for the 2.61 MeV resonance is explained by this data. The strengths of the first five resonances at Eα = 1.77, 1.99, 2.19, 2.37 and 2.42 MeV appear to be (39 ± 13)% lower than previously reported. Spin-parities of l?, 2+ and 2+ have been assigned to the levels at 8.50, 8.69 and 8.86 MeV respectively. The radiative width of the Ep = 1.467 MeV, Jπ = 3? resonance in the 31P(p,γ)32S reaction has also been measured.  相似文献   

16.
Reaction-product cross sections following 20Ne+12C and 16O + 16O collisions at several incident energies have been measured with a E-ΔE counter telescope. They are compared to statistical model predictions. Fair agreement is obtained for the high-Z evaporation residue cross sections, but a strong discrepancy is observed for the lower-Z reaction products. Possible explanations are discussed. It is shown that the compound nucleus formation does not depend on the structure of the colliding ions in the entrance channel and also that it is not limited by the 32S yrast line.  相似文献   

17.
Total fusion cross sections have been measured for the following reactions and energy intervals: 12C + 10B, Ec.m. = 2.10–5.38 MeV; 12C + 11B, Ec.m. = 2.10–5.99 MeV; 14N + 10B, Ec.m. = 2.64–5.97 MeV. Absolute cross sections were extracted from the prompt γ-rays emitted by the various residual nuclei and measured by two large NaI detectors. No resonance structure was observed in the three reactions. The elastic scattering excitation function was also measured at θc.m. = 90.4° for 12C + 10B over the energy range Ec.m. = 3.18–6.82 MeV. Optical model potentials were found which could consistently describe both the fusion and elastic scattering data.  相似文献   

18.
By measuring angular distributions we have assigned Jπ = 6+ to a resonance at Ec.m. = 7.50 ±0.05 MeV in the 12C + 12C system.  相似文献   

19.
Excitation functions for α-emission leading to the ground and first excited states of 26Mg and 8Be emission leading to the ground and first and second excited states of 22Ne have been measured at several forward angles for Ec.m. = 15 to 22.4 MeV. There is little evidence for correlated structure. The angular distribution at 16.5 MeV for the α + 26Mg(g.s.) channel is rather structureless while that for the 8Be+22Ne(g.s.) channel appears to be dominated by a J = 13 contribution. Statistical model calculations indicate that much of the yield for both the α and 8Be exit channel is compound nuclear in origin, with some indication of a larger direct contribution for the 8Be channel at the lower end of the bombarding energy range.  相似文献   

20.
The (p, p′) reaction on 89Y at incident energies of 20.51 MeV and 14.33 MeV and on 87Rb at 20.89 MeV has been studied. In 89Y 28 levels with Eex between 2 and 4.2 MeV and 79 levels with Eex between 4.2 and 6 MeV have been identified. In 87Rb 45 levels with Eex up to 4.2 MeV have been found. Transferred orbital angular momenta and deformation parameters have been deduced from a macroscopic DWBA analysis of the differential cross sections. The experimental results are not consistent with the interpretation of states in 89Y and 87Rb as resulting from the weak-coupling of a proton or proton-hole to excited states of the 88Sr core. Simple shell model arguments are able to yield at least a qualitative agreement with the level scheme as found for 89Y.  相似文献   

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