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1.
In order to determine the electric quadrupole moment of Sr87 (I= 9/2) the hyperfine structure-splitting of the 5s5p 3 P 1-state of the SrI-spectra was investigated by optical double resonance. By detection of high frequency transitions (ΔF=±1,Δm F=0,±1) in an external magnetic fieldH 0≈0 one obtains the hyperfine structure separations asv F=11/2?F=9/2=1463·149 (6) Mc/sec andv F=9/2?F=7/2=1130·264 (6) Mc/sec. From these frequencies one calculates the magnetic hyperfine structure-splitting constantA=?260·084 (2) Mc/sec and the electric quadrupole interaction constantB=?35·658 (6) Mc/sec. B leads to an electric quadrupole moment ofQ(Sr87)=+0·36 (3)·10?24 cm2.  相似文献   

2.
The hyperfine structure splittings of the electronic ground states2 D 3/2 and2 D 3/2 of the stable isotope Sc45 have been measured by the atomic beam magnetic resonance method. From these splittings the magnetic dipole and electric quadrupole interaction constants are found to bea 3/2=(269,560±0,02) Mc/sb 3/2=?(26,37±0,1) Mc/sa 5/2=(109,034±0,01) Mc/sb 5/2=?(37,31±0,1) Mc/s. The values of the electric quadrupole moment calculated fromb 3/2 andb 5/2 differ by about 5% indicating that the configuration 3d 4s 2 of the ground states is perturbed by higher configurations. Averaging these two values we obtain for the quadrupole moment of Sc45 Q(Sc45)=?(0,22±0,01) · 10?24 cm2.  相似文献   

3.
The hyperfine structure of the 32P3/2-state in the Na(I)-spektrum was investigated by optical double resonance. Three zero fieldrf-transitions (ΔF=±1, ΔmF=0) were detected and thus the unambiguous interpretation of therf-spectrum was made possible. From an analysis of therf-spectrum one obtains the magnetic hyperfine structure splitting constant a=(18.5 ?0.2 +0.6 ) Mc/sec the electric quadrupole interaction constantb=(3.2±0.5) Mc/sec which yields an electric quadrupole moment Q(Na23)=(0.138±0.025)·1024cm2.  相似文献   

4.
The hyperfine structure of the 32P3/2 State of Na23has been measured by the optical double resonance technique in a magnetic field of 3.1 kG sufficiently strong to decouple completelyI andJ. In the case of π or (σ+?) excitation the double resonance signal represents the superposition curve of eight unresolved radio-frequency transitions. The dependence of the signal on the pressure of sodium vapour and the radio-frequency field strength has been studied. The analysis of the experimental curves yields for the hyperfine coupling constants the valuesa=(18.7±0.4) Mc/s andb=(3.4±0.4) Mc/s. The nuclear electric quadrupole moment derived from the ratio ofb/a isQ=(0.146±0.02) · 10?24cm2. The Lande factor and the lifetime for the 32P3/2state are gJ=1.3344±0.0004 and τ=(1.61±0.07) · 10?8 sec.  相似文献   

5.
The level-crossing technic has been used to investigate the hyperfinestructur of the 3d 10 4p 2 P 3/2-term in Copper I by scattering the resonance line λ=3248 Å on an atomic beam of separated isotop Cu63 respectively Cu65 in an external magnetic field. From the level-crossing signals values for the magnetic dipol interaction constantsA and for the electric quadrupol interaction constantsB are deduced to beeA(Cu63)=(194,72±0,15) Mc/secB(Cu63)=?(28,8±0,6) Mc/secA(Cu65)=(208,57±0,15) Mc/secB(Cu65)=?(25,9±0,6) Mc/sec. With theA-value of the 3d 10 4p2P1/2-term from optical measurements the ratioA(2 P 3/2)∶A(2 P 1/2)≈0,4 is about twice greater than for an unperturbetalkali-like2P-term. From the width of the level-crossing signals a mean lifetime of the 3d10 4p2P3/2-term τ=(7,0±0,2) · 10?9 sec is deduced.  相似文献   

6.
Co60m was produced by the reaction Co59 (n,γ) Co60m ; its decay has been investigated by scintillation spectrometers. The half-period has been remeasured yielding a value ofT 1/2=(10·35 ±0·20) min. The isomeric decay mainly leads to the Co60 ground state by a (58·6±0·6) keV transition. TheK-conversion coefficientα K= 41±3 and the total conversion coefficientα=47±3 indicate the transition to beM3 and the spin of Co60m to be 2+. Further Co60m decays by beta transitions to Ni60. The beta component (8·6±1·2)·10?3%, log ft=7·32 leading to a (2·16±0·02) MeV level has been measured for the first time. A second component (0·24±0·03)%, log ft=7·23 leads to the 1·33 MeV level. The 2·16 MeV level decays to the Ni60 ground state mainly by a 0·83–1·33 MeV cascade, in a few cases by a direct transition. The spin of the 2·16 MeV level is 2+. Zr90m was produced by the reaction Zr90 (n,n′) Zr90m . The half-period was measured yielding a value ofT 1/2=(0·83±0·03) sec. Zr90m decays in the following way: (77±5) % by a direct (2·31±0·02) MeV —E 5 transition to the Zr ground state and (23±5)% by a (132·5±1·5) keV-(2·18±0·03) MeV cascade detected for the first time in the isomeric decay. TheK-conversion coefficient of the 132·5 keV transition isα k=(2·2±0·3) indicating this transition to beE3 and the spin of the 2·18 MeV level to be 2+. The Zr90m -decay sheme is in accordance with the level sequence of Zr90 as measured in the Nb90 decay.  相似文献   

7.
Co58m , Co58g and Co55 were obtained by radiating nickel-foiles with deuterons of energies 11,5 MeV and 2,07 MeV. The γ-radiation was measured with NaJ scintillation spectrometers. For the isomeric transition of Co58m was determinedT 1/2=(9.15±0.1)h,T γ=(25±1)keV,α K=2200±300 and αL+M=1100±300. From these values it follows, that the radiation is ofM3-type. Twoγ-energies of 95 keV and 1322 keV were found belonging to Co55.  相似文献   

8.
Co54m (T 1/2=1.43 min) was produced in iron-foils by irradiation withdE=19 MeV deuterons. The gamma ray spectrum was investigated using a NaJ(Tl) scintillation spectrometer, a coincidence circuit and a Ge(Li)-counter. There were observed three gamma rays having the following energies and intensities per Co54m decay: 411 keV (0.97±0.07), 1130keV (0.98±0.05), 1407 keV (1.00±0.05). The directional correlation between the pairs of gamma rays were determined. These results correspond to spin and parityJ π=2+ for the 1407 keV,J π=4+ for the 2537 keV, andJ π=6+ for the 2948 keV energy level of Fe54. The last-mentioned level was not excited in previous scattering experiments. Our results are compatible withE=210keV andJ π=6+ or 7+ of the isomeric state of Co54m .  相似文献   

9.
Tl197m was produced by the (α, 4n) reaction on Au197 using 49 MeVα particles. The following results were obtained: Half-lifeT 1/2=(0.55±0.02) sec; energy of the isomeric level (607±4) keV, determined directly by summing up the cascade transitions in a well-type scintillator; energy of the isomeric transition (222±2) keV; conversion coefficients of this transitionα K222=0.41±0.05 andα tot222=2.1±0.2, indicating anE3 multipolarity; energy of the second transition (385±3)keV; conversion coefficientsα K385=0.09±0.03 andα tot385<0.1. This transition was identified asE2 with aM1 admixture of 20 to 30%. Spins and parities are 1/2+, 3/2+ and 9/2? for the ground state, the 385 keV state and the 607 keV isomeric state, respectively, in disagreement with the extreme single-particle model. If this model were correct, anotherM1 transition should appear. No furtherM1 transition having an energy greater than theL-shell binding energy of T1 was observed.  相似文献   

10.
To study the modification of the value of the nuclear quadrupole moment obtained without Sternheimer correction from measurements in states with different principal quantum numbers, the hyperfine structure splitting of the 52 P 3/2 and the 62 P 3/2 excited states of Rb I has been investigated with the optical double resonance method. The experiments, in which isotopic enriched samples of Rb85 and Rb87 were used, have been carried out in the 52 P 3/2 state without a static magnetic field. In the 62 P 3/2 state, a static magnetic field was applied. For the 52 P 3/2 state, the hyperfine structure constants areA(Rb85)=25.029(16) Mc/s,B(Rb85)=26.032(70) Mc/s,A(Rb87)=84.852(30) Mc/s,B(Rb87)=12.611(70) Mc/s. The corresponding constants for the 62 P 3/2 state areA(Rb85)=8.25(10) Mc/s,B(Rb85)=8.16(20) Mc/s,A(Rb87)=27.96(35) Mc/s,B(Rb87)=3.95(10) Mc/s. The values of the nuclear quadrupole moments, derived from both finestructure states, can be brought into agreement when the Sternheimer core correction is applied. The Landé factor for the 62 P 3/2 state isg j=1.334(1).  相似文献   

11.
The hyperfine structure of the groundstate 6s 2 S 1/2 and the nuclear magnetic dipole moment of gold 197 have been studied by the atomic beam magnetic resonance technique. A special high frequency arrangement is described. The hyperfine structure separationΔ v was determined fromΔF=1 transitions. The magnetic dipole momentμ I was measured by a direct method. The experiments yield the following results:Δv (2S1/2)=(6099,309±0,010) Mc/secμ I (Au197)=+(0,1445±0,0014)μ K.  相似文献   

12.
The hyperfine structure of the 62 P 3/2 state of Rb87 has been reinvestigated with optical double resonance in zero magnetic field. The results for the hfs-splitting constants areA(62 P 3/2, Rb87)=27.70 (2) Mc/s andB(62 P 3/2, Rb87)=3.94 (4) Mc/s. From these constants one obtains a value for the nuclear quadrupole moment uncorrected for shielding effects ofQ=+0.138 (1)·10?24 cm2.  相似文献   

13.
With a recording photoelectric Fabry-Perot spectrometer and an atomic-beam light source the hyperfine structure of the Mn I-resonance linesλ=4031 Å,λ=4033 Å,λ=4034 Å (3d 54s 2 a 6 S 5/2?3d 54s4p z 6 P 7/2,5/2,3/2 0)and of the inter-combination linesλ=5395 Å andλ=5433 Å (3d 54s 2 a 6 S 5/2?3d 54s4p z 8 P 7/2,5/2 0) was measured. Furthermore the resonance lines have been measured with a pulsed atomic-beam in absorption. In this case the quotient (I 0(ν)?I(ν))/I 0(ν) was recorded, whereI(ν)=I 0(ν) exp(?α(ν)d) is the observed intensity with absorption andI 0(ν) the intensity of the light source. From the hyperfine structure splitting the value of the electric quadrupole moment of Mn55 was derived to be:Q(Mn55)=+(0.35±0.05)·10?24 cm2.  相似文献   

14.
The Mössbauer effect studies of57Fe in the paramagnetic salt FeNH4(SO4)2·12 H2O reported byObenshain et al. were extended to higher values of the applied external magnetic fieldH a. The results are discussed in terms of the theoretical calculations given byWegener. The data can be fitted using a maximum internal fieldH max=(598±10) kOe and two atomic spin correlation times τc=2,4 · 10?9 sec andτ′ c=2,1 · 10?9 sec.τ c andτ′ c are independent ofH a and the temperatureT. It is assumed in the analysis that the distribution w(H) of the internal fields can be described by a continuous function of the Boltzmann factor type with two parameters. These two parameters are determined by the normalization and the macroscopic magnetization.  相似文献   

15.
The hyperfine structure of the 4f 13 6s 2 2 F 7/2 ground state of Tm169 has been studied with the atomic beam magnetic resonance method. By measuring strongly field-dependent transitions in external magnetic fields between 2200 and 3000 Gauss the interaction between the nuclear magnetic dipole momentμ I and the external field was determined. These measurements yielded a direct value forμ I independent of the electronic properties of the Tm-atom. The results are:μ I=? 0.2310 (15)μ n (diamagnetically corrected), magnetic dipole interaction constanta=? 374.137661(3) Mc/sec andg J(4f 13 6s 2 2 F 7/2)=1.141189 (3).  相似文献   

16.
Tb158m was produced from Tb159 by (n, 2n) reaction and investigated using scintillation spectrometers. The following results were obtained: half-life\(T_{\tfrac{1}{2}} = (10.5 \pm 0.2)\) sec; energy of the isomeric transitionE γ =(109.9±1.4) keV; conversion coefficients α K =56±3; α L M +?=50±8; αtotal=106±10;K/L-ratioK/L=1.3±0.3, yielding the multipole order of the isomeric transition to beM3. Upper limits for the direct beta transitions from the isomeric state to the ground states of the neighbouring even-even nuclei Gd158 and Dy158 are 10?4 and 6·10?3, respectively.  相似文献   

17.
79 mBr was produced by irradiation of natural Br with fast neutrons. The half-lifeT 1/2=(4.87±0.15) sec and the energyE γ=(208±1) keV were remeasured. For the first time the conversion coefficients were determined to beα K=0.25±0.02 and αtotal=0.28±0.05, yielding the multipolarityE3 for the isomeric transition.  相似文献   

18.
The halflife of excited states in some nuclei has been measured by the method of delayed coincidences. Two different experimental arrangements have been used: a conventional scintillation counter equipment and a fast gasfilled parallelplate avalanche-counter. The results of these measurements are: 31 keV-level in Al28:T 1/2=(1.91±0.08) · 10?9 sec, 81 keV-level in Cs133:T 1/2=(6.25±0.05) · 10?9 sec, 145 keV-level in Pr141:T 1/2=(1.85±0.03) · 10?9 sec, 100keV-level in W182:T 1/2=(1.45±0.04) · 10?9 sec, 1290 keV-level in W182 T 1/2=(1.05±0.03) · 10?9 sec, 99 keV-level in Pt195:T 1/2≦1.6 · 10?10 sec, 129 keV-level in Pt195:T 1/2=(6.2±0.7) · 10?10 sec. These experimental values are discussed and compared with theoretical model predictions.  相似文献   

19.
Co55 T 1/2=18 h) was produced by bombarding iron-foiles with 9 MeV deuterons.γ-spectra from the decay of Co55 have been investigated using a scintillation fast-slow-coincidence circuit and a Li-drifted Ge-counter. 18γ-transitions were observed having the following energies in keV and intensities per Co55-decay:γ 1=95 (0.006),γ 2=413 (0.016),γ 3=475 (0.12),γ 4=645 (0.005),γ 5=750 (0.002),γ 6=810 (0.025),γ 7=900 (0.024),γ 8=940 (0.80),γ 9=985 (0.009),γ 10=1055 (0.005),γ 11=1210 (0.01),γ 12=1320 (0.065),γ 13=1375 (0.042),γ 14=1410 (0.13),γ 15=1600 (0.001),γ 16=1800 (0.0006),γ 17=2160 (0.001),γ 18=2310 (0.0042).  相似文献   

20.
The hyperfine structure splitting of the metastable3 P 2-state of Kr83 has been measured by the atomic beam magnetic resonance method. A glow discharge served as a source of metastable atoms which were detected by surface ejection of electrons from a metal. In order to improve the signal-to-noise-ratio the magnetic C-field was modulated at a frequency of 37 cps. From the measured splittings the following hfs coupling constants were determined:
$$A(^3 P_2 ) = - (243 \cdot 970 \pm 0 \cdot 004)Mc/sec,B(^3 P_2 ) = - (452 \cdot 12 \pm 0 \cdot 08)Mc/sec.$$  相似文献   

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