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1.
Absolute coincidence cross sections were measured for the reactions 6Li + 6Li → 3α, 6Li(6Li, 2α), and 6Li (6Li, 2d), where the latter two represent N-body (N ≧ 4) final states. Broad peaks from the 6Li (6Li, 2α) reaction are well described by a double spectator pole (DSP) model utilizing a Hulthén wave function, whereas near 40 MeV the DSP peaks are much narrower than predicted. A broad peak in the 3α final-state spectrum, attributed to a single-spectator pole (SSP) process, is well described with the same wave function. The SSP is the principal mechanism for the 3α reaction, in contrast to data near 40 MeV which show that sequential decay from 8Be levels is dominant.  相似文献   

2.
The results of an experimental study of the reaction 6Li(α, 2α)2H at 700 MeV are given. A comparison with the data from seven other reactions pertaining to the α+d cluster structure of 6Li is presented. The amplitude for the virtual transition 6Li→α+d obtained three of these experiments and the present one are comparable. The internal momentum distributions extracted with the plane-wave impulse approximation in four of the experiments are compatible with a pole form, the width parameter being given by the α-separation energy in 6Li. The remarkable consistency among these results is seen as evidence for the validity of the simple models used for both the reaction mechanism (PWIA) and to describe the α d-vertex (pole approximation) in 6Li.  相似文献   

3.
The differential cross sections for the reactions 56Fe(d, 6Li)52Cr and 58Ni(d, 6Li)54Fe leading to the ground 0+ and the first 2+ excited states are measured at 27.25 MeV. A DWBA analisis of these data and those previously obtained for three Zn isotopes at the same energy is performed. The calculation of the microscopic form factors is carried out within the frame-work of different approximations.  相似文献   

4.
The 6Li(p, pd)4He reaction was studied at 200.2 MeV, at the quasi-free angle pair (θp, θd) = (54°, ?48.9°), for noncoplanarity angles φ from 0° to 28°. 6Li αd spectroscopic factors of 0.84 and 0.76 are deduced from our coplanar data at this energy and 120 MeV, respectively, for ground-state 2S Woods-Saxon wave functions. A recent microscopic three-body calculation predicts spectroscopic factors from 0.70 to 0.75; using the ground-state wave functions from this study, we deduce a factor of 0.76 from the 200 MeV data. DWIA calculations fit the measured integrated cross sections versus φ for spectator momenta Pα ? 100 MeV/c at both bombarding energies, but underpredict them for larger Pα. Momentum form factors were better reproduced with 1S αd cluster wave functions for a soft-core bound-state potential than with the 2S Woods-Saxon wave functions, but the former wave functions generate unphysically large (~1.25) spectroscopic factors.  相似文献   

5.
The reactions 6Li(e,e′α) and 6Li(e,e′d) have been studied at T0 ≈ 520 MeV and q ≈ 1.4 fm?1, by coincidence measurements. The angular dependence of the cross sections is interpreted in the plane wave impulse approximation to obtain the momentum distribution of α-particle and deuteron clusters in 6Li. The amount of clustering of 6Li is also discussed.  相似文献   

6.
In order to study the momentum distribution of an α-cluster in 6Li we have investigated the quasi-free scattering of deuterons in the 6Li(d, dα)2H reaction, using 52 MeV deuterons. The α-particle detector was kept at a fixed position of 30° and the second detector scanned over a range of coplanar angles. The α-cluster momentum distribution has been extracted by means of the plane-wave impulse approximation, using both the energy-sharing method and the angular correlation method. The momentum distributions so obtained are in good agreement with those obtained from other reactions such as (p, pα) and (α, 2α), and are compared with the spectator model. The reasons why the model works well are discussed. For the first time, to our knowledge, quasi-free scattering of deuterons on an α-cluster of a nucleus has been measured and analysed.  相似文献   

7.
8.
The three-body reactions induced by low energy deuterons on 6Li have been studied. The contributions from the sequential processes through the excited states of the intermediate 4He, 5Li, 6Li and 7Li nuclei dominate the coincidence spectra. The quasi-free d + d → d + d, d + α → d + α, and d + d → p + t reactions have been observed and compared with plane wave impulse approximation (PWIA) calculations.  相似文献   

9.
Angular distributions of tritons from the 6Li(n, t)4He reaction were measured at En = 7.25, 6.77, 6.57, 5.24 and 4.71 MeV. Angular distributions of douterons from respectively, the 6Li(n, d)5He two-body breakup reaction were measured at En = 6.77 and 6.57 MeV, and of protons from the 6Li(n, p)6He reaction at En = 6.77, 5.24 and 4.71 MeV. All these reactions in 6Li were analyzed as direct interaction in the formalism of the distorted wave Born approximation. The optical model for the nuclear interaction was found to apply reasonably well to nuclei as light as 4He, 5He, 6He and 6Li. In addition, 6Li as an alpha-deuteron cluster gives the best bound-state wave function to describe the experimental angular distribution of tritons. The excitation functions at forward angles of the 6Li(n, t)4He, 6Li(n, d)5He and 6Li(n, p)6He reactions were measured for incident neutron energies between 4.4 and 7.3 MeV. It is found that the 6Li(n, d)5He two-body breakup reaction has a threshold at about En = 5.3 MeV. Angular distributions at En = 18.3 MeV for tritons and protons from the 9Be(n, t)7Li and 9Be(n, p)9Li, respectively, were also measured.  相似文献   

10.
11.
The angular distributions of deuterons from the 6Li(α, d)8Be reaction corresponding to the 0+ ground state and the 2.9 MeV (2+) state in8Be have been measured at Eα = 17.3, 23.3 and 25.1 MeV. The excitation functions for this reaction have been measured at seven emission angles in the region from 12 up to 25 MeV. The experimental angular distributions are compared with theoretical predictions obtained using DWBA stripping calculations and the plane wave approximation (PWA) for various direct processes. It is shown that the experimental angular distributions can be described throughout the angular region using the simple mechanisms associated with the break-up of the 6Li target nuc clusters and heavy-particle stripping. The interference of these processes is taken into account.  相似文献   

12.
The 6Li(d, dd)α, 6Li(d, dα)d and 6Li(d, tp)α reactions were investigated at low bombarding energies with the purpose to determine the importance of quasi-free processes relative to sequential reactions.  相似文献   

13.
An investigation of the 2H(α, αp)n reaction at a lab energy of 15 MeV has been performed. Results from kinematically complete measurements at eleven angular combinations are presented and analyzed in terms of a semiphenomenological impulse approximation. It is found that if contributions from three-nucleon transfer reactions and n-p final state interactions as well as sequential reactions via states in 6Li are included, it is possible to reach qualitative agreement with the data.  相似文献   

14.
Effects due to the d-α final-state interaction are taken into account in the calculation of quasi-free scattering in the 6Li(e, e′d) and (e, e′α) reactions. The results agree with the data at incident electron energies of around 520 MeV, from which a value of ≈ 4.8 is deduced for the d-α vertex constant of 6Li.  相似文献   

15.
16.
Differential cross sections for the (3He, t) charge-exchange reaction have been measured on a 12C target with 217 MeV 3He particles. High energy tritons were detected using a thick Ge(Li) crystal (43 mm) and a 4 mm Si(Li) detector in an E-ΔE telescope. Microscopic DWBA calculations have been carried out, using the rather well known wave functions of the 12C levels from Gillet and Vinh-Mau. The sensitivity of this reaction to the different terms of the two-body effective interaction is discussed. A comparison of the (3He, t) and (3He, 3He') reactions populating analog final states is also presented. The two-step mechanisms (3He,α)(α, t) and (3He, d)(d, t) are introduced for the first two levels 1+(g.s.) and 2+(0.969 MeV) and the results emphasize the importance of such processes at high energy.  相似文献   

17.
The isobaric analogue state of the ground state of the halo nucleus6He,6Li* has been studied in a pionic fusion experiment at the CELSIUS storage ring facility in Uppsala, Sweden. This was the first of two proposed experiments with the aim to study the high momentum part of the wave functions of the halo nuclei6He and6Li (0+, T=1). The Li nuclei were produced in inverse kinematics reactions with alpha particles incident on a deuterium cluster jet target. The6Li ions were detected in a zero-degree spectrometer situated in the fourth quadrant of the CELSIUS ring. The measurement was done for three different beam energies corresponding to 5.4, 2.2 and 1.5 MeV above threshold in the c.m. The cross-sections slowly increase with beam energy from 95 nb at the lowest energy to about 250 nb at 5.4 MeV above threshold.  相似文献   

18.
The spatial structure of the periphery of lithium and beryllium isotopes is studied by means of charge-exchange reactions and the (t, p) and (d, p) reactions on their nuclei. It is shown that the 0+ isobaric-analog state of 6Li at 3.56 MeV has a halo structure formed by a proton and a neutron, that there is virtually no manifestation of a neutron halo in the ground state of the 9Li nucleus, and that the 11Li nucleus has a Borromean halo structure that two neutrons form with respect to the 9Li core and which manifests itself in cigar and dineutron configurations. The 10Be nucleus has a substantial two-neutron periphery in either configuration both in the ground and in the 2+ excited state at 3.37MeV.  相似文献   

19.
Elastic scattering data have been measured for the 7Li + 90Zr, 6Li + 90Zr, and 6Li + 91Zr systems at E(Li) = 34 MeV. Inelastic scattering data for the 7Li + 90Zr and 6Li + 90Zr systems were also measured for the 2+(2.18 MeV) and 3?(2.75 MeV) states in 90Zr and the 12?(0.48 MeV) state in 7Li. Optical model analyses of the elastic scattering data and DWBA analyses for the states in 90Zr were performed. The deduced deformation lengths for the 2+ state agreed with those extracted in other studies but the deformation length for the 3? state was smaller. The 90Zr(7Li, 6Li)91Zr angular distributions were measured for the 1.21 and 2.03 MeV states and the 2.19 MeV doublet in 91Zr. Also, 90Zr(7Li, 6He)91Nb angular distributions were measured for the ground states, 0.10, 3.41 and 4.82 MeV states in 91Nb. The transitions well matched in angular momentum were described by finite-range DWBA calculations, while other transitions displayed the same phase problems seen with heavier ions. The extracted spectroscopic information was consistent with the results of other reaction studies. At the present energy, it was not possible to determine whether the l = 1 phase problem that occurs for heavy-ion single-nucleon transfer reactions on 2s-1d shell nuclei occurs in 91Zr also.  相似文献   

20.
Schroedinger's equation with separable n-p (3S1) and n-α (2P32) potentials solved to obtain a three-body model of the 6Li ground-state wave function. This model predicts the α-n-p binding energy of 6Li to be 4.67 MeV [Exp.: 4.53 MeV = 3.697 + 0.834 (Coulomb)], the asymptotic normalization constant of the d-α tail to be 2.39, and the amount of d+α component to be 65%. The 6Li→α+d vertex function is slightly more momentum dependent than present experiments suggest.  相似文献   

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