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1.
The 91Zr(d, 3He) reaction was studied at a deuteron energy of 28 MeV. Angular distributions were measured from 13° to 47°; lp values were extracted for the prominent lines of 90Y. The lp values and transition strengths were determined by DWBA analysis. The angular distributions for the p12)(νd52) doublet (g.s. and 0.20 MeV state) exhibit the characteristic l = 1 shape. States at 1.42, 1.57, 1.64 and 1.81 MeV were also populated strongly in the (d, 3He) reaction; the 1.42, 1.57 and 1.81 MeV levels contain l= 1 transition strength and are most likely members of the p32?1)(νd52) multiplet. The 2.03 MeV state has a characteristic l = 3 angular distribution and is suggested to be the only member of the f32?1)(νd52) sextet to be unambiguously observed in this study, most probably the 5? or 4? member. The members of the g52)(νd92) sextet were populated weakly (less than 100 μb/sr) in this reaction.  相似文献   

2.
The hole-hole structure of 94Y was studied via the reaction 96Zr(d, α)94Y and compared to the particle-hole structure of 90Y, which was populated by the reaction 92Zr(d, α)90Y. The deuteron beam energy was 28 MeV. Angular distributions of both reactions were obtained for the prominent lines. New states of 94Y were observed at 0.44, 1.17, 1.39, 1.53, 1.82, 1.90, 2.17, 2.33, 2.46 and 2.77 MeV. Our data are consistent with the previously reported 2? assignment of the ground state, and we suggest Jπ = 3? for the 0.44 MeV state, these being members of the (π2p12, ν2d32?1) doublet. The 1.17 state is suggested to be a member of the (πp32?1, νd52?1) multiplet. The Q-value of the 96Zr(d, α)94Y reaction was measured to be 7.609 ± 0.020 MeV. The reaction 94Zr(d, α) was performed at two angles. Several new states of 92Y were observed at 0.31, 0.78, 1.03, 1.31, 1.49, 1.69 and 1.89 MeV.  相似文献   

3.
The structure of 92Nb has been investigated using the 33.8 MeV 92Zr(3He, t) and (3He, p2nγ) reactions. Several previously unobserved levels, including several belonging to the π(g92)ν(g92)?1 multiplet, are reported. The results are discussed in terms of the shell model.  相似文献   

4.
Photoproton energy spectra have been measured for the 90,91Zr(γ,P)89,90Y reactions at an Eγ endpoint energy of 30 MeV, and for the 90,91Zr,(e, e'p)89,90Y reactions at a number of different electron beam energies around Ee = 21 MeV. Isotopically enriched target foils of metallic 90Zr(97.65%) and 91Zr(89.2%) were used, and the proton spectra measured at 90°. Prominent proton groups are observed in the 91Zr spectra, particularly around Ep ≈ 11 MeV, which closely resemble groups produced in the 90Zr photoreactions. Moreover, the correlating non-ground state proton groups are being produced in transitions leaving the corresponding 89Y, 90Y residual nuclei in excited levels which also correlate in energy. These photoproton groups from 90Zr have previously been identified as representing T> strength. A qualitative explanation is proposed in terms of the core-excitation model, in which the structure in the 91Zr proton spectrum is described as representing dipole T> (T = 132) strength formed by coupling the 2d52 neutron to dipole T> (T = 6) excitations of a 90Zr core.  相似文献   

5.
The (d, 3He) and (α, t) proton transfer reactions on 91Zr were studied at incident energies of 24.3 and 35.4 MeV, respectively. Angular distributions were measured from 6° to 50° (90Y) and 60° (92Nb). High detection efficiency and good energy resolution were obtained by using a magnetic spectrograph in connection with a multiwire proportional chamber. For the low-lying multiplet levels in both nuclei angular momentum transfers and spectroscopic factors were determined by DWBA analysis. In 92Nb the states at 0, 0.135, 0.29, 0.36 and the sum of the states at 0.48 and 0.50 MeV show typical l = 4 shapes. They belong to the (1g92π)(2d52ν) sextet. The corresponding multiplet in 90Y is weakly populated ( ≦ 20 μb/sr), and l = 4 shapes are found for the levels at 0.68, 0.78, 0.95, 1.05 and 1.30 MeV proving previous assignments. The members of the low-lying (2p12π)(2d52ν) doublets in 90Y and 92Nb exhibit a characteristic l = 1 angular shape. The levels at 1.42, 1.57, 1.64, 1.76 and 1.81 MeV in 90Y are excited both by l = 1 and l = 3 resulting from a strong mixing of the (2p32π)?1(2d52ν) and (1f52π)?1 (2d52ν) multiplets. Only the level at 2.03 MeV displays a pure l = 3 shape. From the spectroscopic information on the (2p12π)(2d52ν) and (1g92π)(2d52ν) multiplets in 90Y and 92Nb the g.s. configuration mixing in 91Zr is deduced.  相似文献   

6.
The nucleus 11B has been studied over the excitation energy range from 8.5 MeV to 21.5 MeV with the 9Be(3He, p)11B / reaction at / E3He = 38 MeV. The analogs of the parent states in 11Be have been located at 12.56, 12.92, 14.40, 16.44, 17.69, 18.0, 19.15 and 21.27 MeV. A complementary measurement with the 9Be(α, d)11B reaction at Eα = 48 MeV demonstrates that the 16.44, 17.69, 18.0 and 19.15 MeV resonances have rather pure isospin Tf = 32. The 14.40 MeV state is a strongly isospin-mixed analog of the 52+1.78 MeV state in 11Be. It is argued that spin S = 1 transfer is involved in the excitation of the 16.44 MeV state and its 3.887 MeV parent in 11Be in a two-step stripping process. The Tf = 12 states and the lowest three Tf = 32 states are compared with the predictions of DWBA utilizing shell-model form factors. It is concluded that the Tf = 12 strength is more strongly fragmented than is implied by the calculations of Teeters and Kurath.  相似文献   

7.
The cross section, vector analyzing power, and proton polarization have been measured for the ln = 0 reaction 116Sn(d, p)117Sn(g.s.) at 8.22 MeV. In addition, cross section and analyzing power data have been obtained at 8.22 MeV for 116Sn(d, d)116Sn and for 116Sn(d, p)117Sn leading to excited states of 117Sn at 0.159, 0.317, 1.020, 1.179, 1.308 and 1.497 MeV. The cross section and analyzing power for 117Sn(p,p)Sn and for 117Sn(p, d)116Sn leading to the 1.294 MeV state of 116Sn have also been measured at 12.91 MeV. The data for 116Sn(d, p)117Sn(g.s.) have been used to separate the contributions to the analyzing power arising from spin-dependent forces in the proton and deuteron channels. A similar analysis is presented for an ln = 0 90Zr(d, p)91Zr transition at 11 MeV. Optical-model analyses have been performed for the elastic scattering data. The reaction data have been compared with distorted-wave calculations in order to investigate the validity of various deuteron potentials, as well as to extract spectroscopic information.  相似文献   

8.
Lifetimes have been measured in 91Zr and 93Mo by the Doppler shift attenuation method through the 90Zr(13C, 12C)91Zr and the 92Mo(13C, 12C)93Mo reactions. Gamma rays were observed in coincidence with the back scattered particles and the reactions took place at sub-Coulomb energies. The lifetimes measured in 91Zr are τ(1205) = 250+90?70 fs, τ(1467) = 280+160?110 fs, τ(2042) < 30 fs, τ(2558) = 180+90?60 fs. The lifetimes measured in 93Mo are τ(1361) = 170+80?40 fs, τ(1494) = 60 ± 40 fs, τ(1697) = 440+230?130 fs, τ(2705)=160+80?60fs These results are compared with the expectations of the shell model and the 3s12 → 2d52E2 transition is shown to be very enhanced.  相似文献   

9.
Energy levels in 42Ca up to 7.8 MeV have been studied in the neutron capture reaction 41Ca(d, p)42Ca with 12 MeV bombarding energy. Ninety-four excited states have been identified and angular distributions have been measured in the interval from 5° to 110° by means of a broad-range magnetic spectrograph. The angular distributions together with DW calculations have been used to determine In values and spectroscopic factors. The f72 strength sum agrees with shell-model expectations if the f72 spectroscopic factors are renormalized by 10.75, in line with other f72. transfer experiments on 40Ca and 41Ca. A similar renormalization of the ln = 1 spectroscopic factors brings this strength sum in accordance with the shell-model calculations. The effective (f722) matrix elements for 42Ca are compared with the corresponding matrix elements of 42Sc and 48Sc. The differences between the three sets of matrix elements are of the order of a few hundred keV or less. The monopole centroid energy of the (f72)2 multiplet is shifted downwards in the mass-42 nuclei compared to 48Sc, possibly indicating the importance of the monopole pairing force near 40Ca.  相似文献   

10.
The tensor analysing powers T20 and T22 of(d, p) reactions leading to several states of the final nuclei 29Si, 68Zn, 91Zr and 209Pb were measured at 12.3 MeV deuteron beam energy. The measured tensor analysing powers together with the vector analysing power and cross-section data are compared with DWBA calculations with and without the deuteron D-state. The D-state effects and j-dependence of the tensor analysing powers are discussed. The spin transfers involved in populating the 1.08, 1.88 and 3.30 MeV states in 68Zn in the 67Zn(d, p)68Zn reaction are deduced to be predominantly 12?. This implies an assignment for the 3.287 MeV level of 68Zn of Jπ = 2+.  相似文献   

11.
By continuing the 2H(d, p)3H, Ed = 13.0 MeV tensor polarizations to the forward and backward transfer poles it was possible to determine the corresponding G2G0 values for the deuteron (0.0268 ± 0.0007) and triton (0.048 ± 0.007).  相似文献   

12.
Neutron pick-up cross sections and vector analyzing powers have been measured for the reaction 55Mn(d, t)54Mn at 17 MeV. The mixture of p12 to p32 transfer to the low-lying ln = 1 states has been found. Evidence of the f72 hole nature of several strong ln = 3 states above 1 MeV has been obtained.  相似文献   

13.
States in 92Tc have been studied by means of the 92Mo(3He, t) reaction at 27.5 MeV. The Q-value for this reaction and the excitation energy of the isobaric ground state analogue of 92Mo were determined to be ?7.882 ± 0.030 MeV and 3.813 ± 0.030 MeV respectively. Strongly populated levels in 92Tc appear to belong to configurations arising from the (1g92)π(1g92)ν?1 multiplet.  相似文献   

14.
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   

15.
Using the 52Cr(t, p)54Cr reaction at a bombarding energy of 15 MeV, excitation energies have been measured for 30 levels up to Ex = 5.583 MeV in 54Cr. Angular distributions were obtained for all but one of these levels; these have been compared with distorted-wave Born approximation (DWBA) calculations to determine the L-transfer (and hence Jπ). The measured cross sections have been compared to the predictions of DWBA calculations that use two-neutron transfer amplitudes from a shell-model calculation with the active neutrons restricted to the (2p32, If52, 2p12) orbitals.  相似文献   

16.
Differential cross sections, vector and tensor analysing powers have been measured for the 61Ni(d, p) reaction at a deuteron energy of 12.3 MeV. Most of the 30 transitions observed below 8.5 MeV excitation are dominated by a single j-value, which was determined from behaviour of the analysing power data. For a number of transitions it was possible to make unambiguous j-assignment relying on the established j-dependence of the T22 tensor analysing power. The deduced spectroscopic factors indicate that the full strength of neutron transfer to the (2p, 1f52) and 1g92 orbits was found and seven 52+ transitions were located above 5.3 MeV. The separated strengths of the 32?, 12?and52? transitions are compared with shell-model calculations for the low-lying states of 62Ni.  相似文献   

17.
Angular distributions of the vector analysing power and the cross section were measured for 90Zr(d, p)91Zr. Measurements were made on two transitions at a deuteron energy of 11 MeV and on 20 transitions at 12 MeV. The observed j-dependence of the vector analysing power provided unambiguous spin assignments for most final states. Measurements of the cross section and vector analysing power were also made for deuteron elastic scattering at 11 MeV in order to determine the potential parameters for DWBA calculations. The DWBA predictions are in good agreement with the measured (d, p) cross sections and in qualitative agreement with the analysing powers. Enriched targets.  相似文献   

18.
Angular distributions of γ-rays from the 2H(d, γ)4He reaction have been measured at the deuteron energies Ed = 6.05, 8.96 and 11.67 MeV with a 12.7 cm × 15.2 cm NaI(Tl) crystal enclosed in a Cerenkov anticoincidence shield. A least-square fit of the angular distributions indicates that the differential cross section is proportional to sin2θ cos2θ and that the process proceeds through an E2 transition of the type 1D21S0.  相似文献   

19.
Lifetime and g-factor measurements have been made with pulsed beam-γ time-differential techniques using the 89Y(α, 2n)91Nb and 88Sr(α, n)91Zr reactions. A mean lifetime τ = 14.4 ± 0.5 nsec and a g-factor of 1.26 ± 0.04 were obtained for the 132? 1985 keV level in 91Nb and τ = 41.9 ± 1.2 nsec and g = 0.70 ± 0.01 were obtained for the 152? 2288 keV level in 91Zr. These results are compared to theoretical calculations for g92)2p12) and g92)(πp12)(vd52) configurations in 91Nb and 91Zr, respectively.  相似文献   

20.
The reaction 12C(7Li, t)16O has been studied at E(7Li) = 34 MeV with the LASL tandem accelerator and QDDD magnetic spectrometer. Angular distributions to levels with Ex < 11 MeV have been obtained from 0° to 90°, including 0°. The results have been analyzed with finite-range distorted-wave Born approximation theory. The α-particle spectroscopic factors and reduced widths obtained are compared with those calculated with group theory (SU(3)) and other models. The analysis of data for the 7.1 and 9.6 MeV Jπ = 1? levels, which are of great importance in stellar helium buring, yields a ratio, R, of dimensionless reduced α-widths θ2a(7.1 MeV)θ2a(9.6 MeV) = 0.35b ± 0.13. The observed line width of the 9.6 MeV level (Γc.m. = 390 ± 60 keV) is less than the accepted value (Γc.m. = 510 ± 60 keV) and implies θ2a(9.6 MeV) ≈ 0.6. These results as well as data for the 6.92 MeV Jπ = 2+ and 10.35 MeV Jπ = 4+ “α-cluster” states indicate 0.09 < θ2a(7.1 MeV) < 0.33 with a mean value θ2a(7.1 MeV) = 0.14 ± 0.04. The implication for stellar helium burning is discussed.  相似文献   

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