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1.
e-γ directional correlation measurements of 2+(879 keV)2+(87 keV)0+ cascade in160Dy have been made and the magnitude of electric monopole to quadrapole mixing ratio for 879 keV transition was found to beq k =?0.03(10) for λ=0 (λ-according to Hager-Saltzer definition).  相似文献   

2.
The decay of119g+m In to the excited states of119Sn was investigated.119In was produced by the120Sn(γ,p)119In reaction on an enriched SnO2 target. The isomeric transition of 311.25 keV to the119In ground state was observed. In the beta decay of119m In excited states at 23.9, 920.5, 921.4, 1089.0, 1187.9 and 1249.6keV in119Sn withJ π values of 3/2+, 3/2+, 5/2+, 5/2+, 3/2+ and 1/2+ respectively, are fed. In the decay of the119In ground state only the 7/2+ level in119Sn at 787.0 keV is fed.  相似文献   

3.
An electron detector system with a 3 mm × 100 mm2 Si(Li) detector with a cooled FET and vacuum air lock for changing sources was constructed. The absolute efficiency was measured as a function of energy for use in the measurement ofK conversion coefficients. With the Si(Li) and a Ge(Li) detector, theK conversion coefficient of the 320 keV transition in51V was measured to be 0.00156 ± 0.00008 where theK conversion coefficients of the 661 and 279 keV transitions in137Ba and203Tl were used as standards. From absolute detection efficiency measurements, theK conversion coefficients of the 388 and 483 keV transitions in87Sr were measured to be 0.16 ± 0.02 and 0.0024 ± 0.0003, respectively.  相似文献   

4.
The decay of 12.4 y152Eu to152Sm and152Gd was studied in a high resolution singles measurement and two 4096×2048 Ge(Li)-Ge(Li) coincidence studies. Forty-five gates were analyzed in order to confirm or establish the placement of the γ rays as well as to accurately determine the intensities of the 12 doublets, which included several not previously reported. A new γ-β interband transition, 4 γ + →2 β + (561.4 keV), a possible 3 γ + →2 β + (423.7 keV) transition, and a new 330.9 keV transition between the 4 γ + level and theI π K=3?0 octupole level were established from coincidence data. Levels at 1757.0 keV in152Sm and 1282.5, 1318.7, and 1692.2 keV in152Gd are now established on the basis of coincidence data. These data also establish for the first time the population in the152Eu decay levels at 1680.0 and 1047.9 keV in152Sm and152Gd, respectively, as well as a new level at 1700.8 keV in152Sm.  相似文献   

5.
Using the Mössbauer effect of the 23.8 keV transition in119Sn, the nuclear magnetic dipole moment of the 23.8 keV 3/2+ state is measured to be 0.632(3)μ n . From a comparison with previously published results a hyperfine anomaly of ?8.8(5)% is obtained.  相似文献   

6.
Conversion coefficients and conversion ratios of someγ-transitions in201Tl and203Tl were measured by means of simultaneous spectroscopy ofγ-quanta and conversion electrons employing intensity calibrated semiconductor detectors. The experiments aimed at a precision as high as possible within the limits of the experimental methode used. Theγ-transitions were of the typeM 1(+E2). From the measured values the penetration parameters of the internal conversion for theM 1 components (λ) together with the multipol mixing ratios (δ2) were deduced. The necessary theoretical coefficients were taken from the tables of Hager and Seltzer. The results are for the ?-forbidden 331 keV transition in201Tl,λ=+4.0±1.0,δ 2=1.78±0.16; for the ?-allowed 361 keV transition in201Tl,λ=+0.5±0.5,δ 2=0.02±0.02; for the ?-forbidden 279 keV transition in203Tl,λ=+ 5.71±0.45,δ 2=1.55±0.08.  相似文献   

7.
A 17.1min, 19/2? isomer has been established in129Sb at 1851 keV. It is fed by levels populated in the decay of the 6.2min, 11/2?129Sn isomer. This isomer decays by an M4, 723keV internal transition and by β? decay to levels in129Te. The 723keV transition is 20 times slower than 11/2?→3/2+ M4 transitions in the adjacent odd-N nuclides and is 10 times faster than the M4 transition from the 19/2? isomer in135Cs. A partial level scheme for the decay of the 11/2?,129Sn isomer is given showing levels that populate the 19/2? isomer along with a partial level scheme for129 Te.  相似文献   

8.
Using the Mössbauer technique the magnetic hyperfine splitting of the 130 keV transition in195Pt has been observed in a Pt-Fe alloy. The derived magnetic moment is μ130=(0.81 ?0.25 +0.13 μ k . Isomershift measurements with the 130 keV and the 99 keV transitions in alloys yielded Δ〈r 2130/Δ〈r 299=1.5±0.2 for the ratio of the changes in the mean square charge radius of the two excited states. From isomershifts of the 99 keV transition in compounds an estimate of Δ〈r 299/〈r 2〉=?(1.6 ?0.9 +4.4 ) · 10?4 is made for the change in radius of the first excited state. The linewidth of the Mössbauer spectrum of the 32.2 keV transition in201Hg gives a lower limit of 0.1 ns for the half-life of the second excited state. The results are compared with values for other nuclides in this mass region.  相似文献   

9.
TheL-subshell conversion for 77 keV transition andK,L 1,L 2-shell conversion for 191 keV transition in197Au, as well asK-shell conversion transition of 158 keV in199Hg were measured by means of Π√2-iron free electron spectrometer. Relative gamma-ray intensities have been determined by Ge(Li) spectrometer. From these measurements the α K conversion coefficient value has been deduced for 191 keV transition as αK(191 keV)=0.86±0.03. This value shows that the spin of the level at 268 keV in197Au is 3/2+. For the penetration parameter (λ) and intensity ratio \(\left( {\delta ^2 = \frac{{\left\langle {E2} \right\rangle ^2 }}{{\left\langle {MI} \right\rangle ^2 }}} \right)\) the following values are obtained: $$\begin{gathered} \lambda = 3.4 \pm _{1.5}^{1.9} \delta ^2 = 0.11 \pm 0.03for 77 keV transition \hfill \\ \lambda = 3.2 \pm _{0.6}^{0.8} \delta ^2 = 0.17 \pm 0.04for 191 keV transition. \hfill \\ \end{gathered} $$ The agreement of these results with the predictions of De Shalit model is discussed.  相似文献   

10.
Transitions in146Eu and146Sm were studied using a double-focussing beta-ray spectrometer and a Ge(Li) detector. Internal conversion and gamma-ray intensities were determined. The internal conversion spectrum of the three 155, 115 and 116 keV cascading transitions in146Eu was studied for all subshells.K-,L- andM-subshell ratios were determined andE2/M1 mixing ratios were deduced for these three transitions. Intensities from theN- andO+P-shells were determined and compared to theoretical calculations. All internal conversion intensities were found to be in agreement with theoretical data for pureM1 character with smallE2 admixtures for all the three transitions. Selected parts of the internal conversion spectrum of the transitions in146Sm were restudied at 0.06% momentum resolution. This study was mainly concentrated on four transition doublets feeding and deexciting the close lying levels at 1,380 and 1,381 keV. A new transition with 702.20 keV energy was detected in the 702–703 keV transition group. Internal conversion coefficients were deduced using reported gamma-ray intensities. Multipole characters of the transitions were deduced and used as a basis for a discussion of the spins and parities of the lower lying excited states of146Sm.  相似文献   

11.
The decay of121 g+m In to the excited states of121Sn was investigated.121In was produced by the122Sn(γ,p)121In reaction on an enriched SnO2 target. Strong indications of the isomeric transition of 321 keV to the121In ground state were found. In the beta decay of121m In excited states at 60.1, 908.9, 1101.9, 1120.4, 1403.0, 2864.1, 3119.8 and 3228 keV in121Sn withJ π values 1/2+, 3/2(5/2)+, 3/2+, 5/2+, 5/2+ and 1/2+ or 3/2+ for the three levels around 3 MeV, are fed. In the decay of the121In ground state only the 7/2+ level in121Sn at 925.3 keV is fed.  相似文献   

12.
The properties of the triplet of low-lying states in101Mo have been studied through spectroscopy of theγ radiation following thermal neutron capture in100Mo and β? decay of101Nb and through a measurement of the proton angular distributions in the100Mo(d,p) reaction with 14 MeV deuteron energy. The half-lives of the 13.5 keV state and the 57.0 keV 5/2+ state have been measured as 226(7) and 133(7)ns, respectively. These values and the quadrupole/dipole mixing ratios of the 13.5 keV and 43.5 keV transitions yield spin and parity 3/2+ for the 13.5 keV level. The E2 components in the 13.5 (3/2+ →1/2+) and 43.5 keV (5/2+→3/2+) transitions are ≦ 8·10?4 and 54(9)%, respectively. The possibility of an additional state near to the 57.0 keV level is discussed. IBFM/PTQM calculations, taking into consideration the transitional character of the100Mo boson core, account for the electromagnetic-transition and transfer-reaction pattern of the triplet of states.  相似文献   

13.
The following meanlives of levels in72Se have been measured using the recoildistance Doppler-shift method:Τ(2+, 862 keV)=3.1±0.6 ps,Τ(2+′, 1317 keV)=12.5±2.6 ps,Τ(4+, 1638 keV)=1.2±0.3 ps andΤ(6+, 2469 keV)≦0.7 ps. These meanlives yield sixB(E2) values which are discussed together with the known data of the depopulation of the excited 0+′ state at 937 keV. Systematics of 0+′ states in the mass region 70?A?100 show that the low excitation energy of the 0+′ states is correlated with subshell closures. This suggests that the previous interpretation of the 0+′ state in72Se as a rotational band head is questionable.  相似文献   

14.
The electron-capture decay of228Pa to levels in228Th has been studied using mass-separated sources and high-resolutionγ-ray and conversion-electron spectroscopy. A level at 979.5 keV is assigned as 2+ member of a second excited Kπ=0+ band, with the 0+ band head at 938.6 keV. The 2+ and 3+ members of a second excited Kπ=2+ band at 1153.5 and 1200.5 keV, which decay by strongE0 transitions to the 969 keVγ-vibrational band, are confirmed. In addition we tentatively propose a Kπ=1+ band at 944 keV. The Kπ=0?, 1? and 2? members of the octupole quadruplet are confirmed, and theγ decay of these levels is analysed in an approach, in which the mixing of the octupole bands by the Coriolis interaction is taken into account. It is suggested that octupole correlations might be important for theE1 transition moments. A total of 29 levels is observed between ~1.4 and ~2.0 MeV, for which the nuclear structure, and the possible assignment to rotational bands, is unclear.  相似文献   

15.
The internal conversion subshell intensities of the (21.529±0.014) keV transition in151Eu and the (22.494±0.011) keV transition in149Sm have been determined in a high resolution investigation using a double-focussing iron-core spectrometer. The subshell ratios yielded unambiguousM1+E2 multipole mixtures for both transitions. δ2(E2/M1) for the 21.53 keV transition was determined to be (8.8±0.7)·10?4 and for the 22.49 keV transition to be (5.5±1.2)·10?3.  相似文献   

16.
Bombarding a85Rb target by 27 MeVα-particles the following half-lives of excited states in different nuclei have been determined by means of the generalized controid shift method: in87Y,T 1/2(2827.1 keV)=0.75±0.10 ns,T 1/2(2675.9 keV)=0.25±0.10 ns,T 1/2(3595.3 keV)=0.5±0.2 ns andT 1/2(2986.9, 3094.4 keV)<0.1 ns; in88Y,T 1/2(232.1 keV)=0.8±0.1 ns and in85Rb,T 1/2(151.2 keV)=0.6±0.1 ns. In87Y, the members of the doublet (vg 9 2/?2 )8+ (πp1/2) are identified. E2 transition rates 21/2+? 17/2+ in odd A≈ 90 nuclei are shown to represent essentially core transitions. Evidence for the existence of seniority-five configurations is found.  相似文献   

17.
A partial decay scheme for 0.1 sec 98Rb has been deduced from γ-singles, γ-multispectra ana γγ coincidence measurements taken at the OSTIS mass-separator system at the Institut Laue-Langevin. The low-lying levels of 98Sr follow the energy level systematics of the even-AN = 60 isotones. The onset of nuclear deformation in even-A neutron-rich Sr isotopes appears to occur at mass 98, as the first 2+ level energy drops from the nearly constant value of about 800 keV for masses 90–96 to 144 keV at mass 98. Energy level systematics indicate that a transition in the nuclear structures of the more neutron-rich nuclei near mass 100 occurs rather sharply at neutron number N = 60.  相似文献   

18.
The conversion electron spectrum of the decay of152Eu m (9.3 h) has been specially investigated forE0 transitions with the aid of a magnetic spectrometer and coincidence techniques. Besides the knownE0 transitions of 685 keV in152Sm and 615 keV in152Gd two further pureE0 transitions of 432 keV and 1048 keV have been observed. It is shown that theseE0 transitions are identical with those observed previously in the decay of152Tb. NoE0 transitions could be found from a 0+ state of 1083 keV in152Sm. The measured intensities together with the gamma spectrum measured by Barretteet al. give a consistent decay scheme of152Eu m . Furthermore the half-life of the 0+ level at 615 keV in152Gd was measured using the method of “delayed coincidences”. The result was (0.2≦t 1/2≦2.1)×10?10 s. From this theE0 transition probability for the level was derived as (0.3≦W K (E0)≦3.7)× 109 s?1 and theρ-value as 0.10≦¦ρ¦≦0.36. The results are discussed within the framework of the collective model.  相似文献   

19.
We have investigated the decay of123g+mIn to excited states of123Sn.123In was produced by the124Sn(y,p)123In reaction on an enriched SnO2 target. The isomeric transition to the123In ground state was not observed. In the beta decay of123m In excited states at 24, 150.9, 920.5, 1194, 2621, 3151, 3256 and 3306 keV in123Sn withJπ values 3/2+, 1/2+, (5/2+), 5/2+, 1/2+, (1/2+, 3/2+), 3/2+ and (l/2+, 3/2+), are fed. In the β decay of the121In ground state only the 7/2+ level at 1154 keV in123Sn is observed.  相似文献   

20.
TheK-internal conversion coefficient of the 205 keV (7/2+→5/2+) transition in107Cd was determined. From the measured value α K =0.0552±0.0009 and the known value of theE2/M1 mixing ratio δ2 a value of 6.3±1.5 was deduced for the penetration parameterλ. Information derived on effective gyromagnetic ratios in the frame of an extreme single particle model is briefly discussed.  相似文献   

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