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1.
The hyperfine structure splitting of the 82 P 3/2 state of Rb85 and Rb87 has been investigated with optical double resonance. The following interaction constants have been obtained:A 8p 85 =1.99(2) MHz,B 8p 85 =1.98(12) MHzA 8p 87 =6.75(3) MHz,B 8p 87 =0.96(6) MHz. The lifetime of the 82 P 3/2 state is: τ=4.0(8) · 10?7 sec.  相似文献   

2.
The electric quadrupole interaction constantB of the 8p2P3/2 state of Cs134 has been determined by an optical double resonance measurement of the hyperfine structure transition vF=11/2?F=9/2=47.84(12) Mc/s. The results are: B 8P 134 =8.06(20) Mc/s and Q 8P 134 =+ 0.427(8) · 10?24cm2. Comparison is made between the measurements in the 7p and 8p electronic states: Q 8P 134 /Q 7P 134 =0.977(20). The ratio of the corresponding Sternheimer correction factors yields the value C7p/C8P=0.982.  相似文献   

3.
Using the Mössbauer technique electric hyperfine interactions of the first excited non-rotational states at 64 keV in157Gd and at 86.5 keV in155Gd have been determined in GdF3 and GdCl3· 6H2O. For the ratio of quadrupolmoments the ratiosQ 64 157 /Q g 157 =1.74±0.04,Q 86.5 155 /Q g 157 =?0.07 ± 0.21 andQ g 155 /Q g 157 =0.78 ± 0.06 were found. In addition isomer shifts were observed from which a ratio δ〈r2 64 157 /δ〈r2 86.5 155 =?2.6±0.15 can be inferred.  相似文献   

4.
The reaction γ * (Q 2)p→ρ 0 p has been studied at large Q 2 and W 2/Q 2 and low momentum transfers to the nucleon, k 2 —that is, in the region where the Pomeron exchange mechanism is operative. At sufficiently large Q 2, the Pomeron interacts with quarks occurring at small distances, whereby the hard component of the Pomeron is separated, so that the process is governed by the Pomeron of perturbative QCD (BFKL Pomeron). Our calculations indicate that, in vector-meson electroproduction at low k 2 , the perturbative regime cannot set in fast because, for Q 2≤100 GeV2 and, accordingly, for W 2/Q 2≤107, comparatively large distances of $\rho _{q\bar q} > 0.2$ fm are important.  相似文献   

5.
Excited states in85Rb have been studied via the82Se(7Li, 4n) reaction by using in-beamγ-ray spectroscopy. On the basis of new experimental data on coincidence relations, angular distributions and linear polarizations of theγ-rays the yrast sequence has been extended up to a 33/2+ level at 7.1 MeV excitation energy. Using the DSA method mean lifetimes have been determined for 9 levels. Above the 21/2+ yrast state 5 fast M1 transitions withB (M 1) ≧0.3 W.u. have been identified. They are interpreted as transitions between recoupled states of the configuration πg9/2ν(g9/2) 8+ ?2 or πg9/2(f 5 2 /?1p 3 2?1 )4+ν(g9/2) 8+ ?2 .  相似文献   

6.
A method of simultaneous parametrization of one- and two-body interactions on atomic hyperfine structure of configurationl N is proposed and applied for the analysis of the configuration (6p)3 in the bismuth atom. For this purpose, the hyperfine structure splittings of the levels2D 3 2/0 ,2D 5 2/0 and2P 1 2/0 were measured. The finally obtained values of HFS parameters are: for one-body parameters (in MHz):a p 01 =2,537(9),a p 12 =5,182 (12),a10=?2,019(10),b p 02 =?3,198(53),b p 11 =2,816(54); for two-body parameters (in MHz):x pp ′/01 ,2=284(3),x pp ′/12 ,2=581(5),x pf ′/12 ,2=170(70),x pp ′/02 ,2=?359(36),x pf ′/02 ,2=?33(100). The value of the quadrupole moment of the nucleus 83 209 Bi is also discussed.  相似文献   

7.
Life-times of low-lying levels in 37 91 Rb54 and 37 93 Rb56 have been determined fromβ ??γ coincidence measurements at the fission-product separator JOSEF. Values oft 1/2=17.0(8) ns and 2.0(2) ns have been obtained for the levels at 1,134 keV in91Rb and 267 keV in93Rb, respectively, and upper limits could be deduced for several other states. Calculations in the frame of IBFM/PTQM have been performed for91Rb, the results of which allow an interpretation of the low-lying levels of this nucleus. For the 1,134 keV level the configuration [πg 9/2?2+] 7/2+ is suggested which lies close to or even below the 9/2 1 + level. The calculated half-life of 14 ns for the 1,134 keV level reproduces well the experimental value. The half-life of the 267 keV level in93Rb favours the assignment ofI π=1/2? to this state over the alternative 3/2?.  相似文献   

8.
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   

9.
The transient field technique has been used to determine theg-factor of the 4 2 + state at 6.010MeV excitation in24Mg. The deduced value ofg=+0.5(4) is consistent with collective model expectations. Further, the equality within experimental accuracies, of the g-factors of the 2 1 + , 2 2 + , 4 1 + and 4 2 + states agrees with theoretical predictions for thisT=0 self-conjugate nucleus, in contrast to the results for20Ne.  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.
Lifetimes and hfs coupling constants of some excited states of the 4d 9 5p configuration of Pd I have been determined in a level crossing experiment by observing the field dependence of the polarization of the fluorescence radiation in a magnetic field. From the halfwidths of the measured zero field level crossing signals one obtains the mean lifetimes of the following fine structure states:τ(3P 1 0 )=(7.46±0.32)nsec;τ(3 P 2 0 )=(6.9±0.76)nsecτ(3P 1 0 )=(4.99±0.35)nsec;τ(3 D 1 0 )=(4.89±0.40)nsecτ((3D 3 0 )=(6.99±0.49)nsec;τ(3 F 4 0 )=(7.09±0.46)nsec.Δm=2 crossing signals were detected in the3 P 1 0 ,3D 3 0 and3F 4 0 -states of the odd isotope105Pd. A detailed analysis of the experimental curves yields the hfs coupling constantsA andB of these states:A(3P 1 0 )=?(133±2) Mc/sec;B(3 P 1 0 )=(140±30) Mc/secA(3D 3 0 )=?(120±10) Mc/sec;B(3 D 3 0 )=?(660±100) Mc/secA(3F 4 0 )=?(87±2) Mc/sec;B(3 F 4 0 )=?(330±30) Mc/sec. A theoretical calculation of the hfs constants is given on the basis of reduced matrix elements. Within the limit of the errors these values agree with the experimental ones. The nuclear electric quadrupole moment deduced from the measuredB values isQ (105Pd)=(0.8±0.3)·10?24 cm2 (without corrections).  相似文献   

12.
The odd-odd 88 37Rb51 and 86 35Br51 nuclei have been produced as fission fragments in the fusion reaction 18O$ + $208Pb at 85MeV bombarding energy and studied with the Euroball IV array. Their high-spin level schemes have been built from the triple $ \gamma$ -ray coincidence data and $ \gamma$ - $ \gamma$ angular correlations have been analyzed in order to assign spin and parity values to many observed states. The proposed configurations involve proton excitations from three sub-shells located close to the Fermi levels, $ \pi$ p 3/2 , $ \pi$ f 5/2 , and $ \pi$ g 9/2 , the $ \nu$ d 5/2 neutron acting as a spectator. The residual $ \pi$ $ \nu$ interactions are extracted from the multiplets of states resulting from the $ \pi$ p 3/2 $ \nu$ d 5/2 and $ \pi$ f 5/2 $ \nu$ d 5/2 configurations. The empirical values of the latter are discussed and compared to those known in two similar configurations having j p = j n with l p = l n + 1 , where the role of the tensor force had been highlighted.  相似文献   

13.
We have calculated the longitudinal and other polarization dependent cross sections for jet production in deep inelasticep, vp, and \(\bar vp\) scattering up to order α s of the quark-gluon coupling constant. Fragmentation of final state partons into hadrons is taken into account. Distributions in thrust,p 2 T in andp 2 T out are predicted for all three reactions and various values ofW andQ.  相似文献   

14.
The questions of how a dipole character of the dependence of the form factors G E and G M on the square of the momentum transfer to a proton, Q 2, arise and why a violation of this dependence occurs, which was first observed in a JLab polarization experiment, are investigated. The answers to these questions could be obtained owing to the use of the simplest QCD concepts of the proton structure and the results obtained by calculating the matrix elements of the proton current in the case of non-spin-flip and spin-flip transitions for protons in the diagonal spin basis (DSB), where the Little Lorentz group common to the initial and final proton states is realized. In DSB, the form factors G E and G M are determined by the matrix elements J p ??,?? and J p ???,?? of the proton current in the cases of non-spin-flip and spin-flip transitions for protons. In an arbitrary reference frame, the relations between these matrix elements and the form factors are J p ??,?? ?? G E and J p ???,?? $\sqrt \tau G_M$ , where ?? = Q 2/4m 2, with m being the proton mass. In considering the problem in question at the quark level, use is made of the model where the proton consists of three pointlike quarks having identical masses and where the respective matrix element of the proton current is the product of three quark-current amplitudes having the form J p ??,?? ?? 1 and J p ???,?? ?? $\sqrt \tau$ . It is shown that the aforementioned dipole dependence arises if the proton spin flip is due to spin flip for only one of the three quarks. As to violations of this dependence, they are caused by the contributions to J p ??,?? from spin-flip transitions for two quarks or by the contribution to J p ???,?? from spin-flip transitions for all three quarks constituting the proton.  相似文献   

15.
The hyperfine structure of the 62 P 1/2 and 72 P 1/2 state of85Rb and87Rb and of the 62 P 3/2 state of87Rb has been investigated with optical double resonance at intermediate magnetic fields. The magnetic interaction constants,g j factors and lifetimes are: $$\begin{gathered} 6^2 P_{1/2} state: A\left( {^{85} Rb} \right) = 39.11\left( 3 \right) MHz,A\left( {^{87} Rb} \right) = 132.56 \left( 3 \right)MHz, \hfill \\ g_j = 0.6659\left( 3 \right), \tau = 1.14\left( {13} \right) \cdot 10^{ - 7} \sec , \hfill \\ 7^2 P_{1/2} state: A\left( {^{85} Rb} \right) = 17.68\left( 8 \right)MHz,A\left( {^{87} Rb} \right) = 59.92\left( 9 \right)MHz, \hfill \\ g_j = 0.6655\left( 5 \right), \hfill \\ 6^2 P_{3/2} state: g_j = 1.3337\left( {10} \right), \tau = 1.12\left( 8 \right) \cdot 10^{ - 7} \sec for ^{87} Rb. \hfill \\ \end{gathered} $$ From the hfs coupling constants of then 2 P multiplets a 11.5% core polarization contribution to the magnetic hfs of then 2 P 3/2 states is obtained, which is found to be independent from the main quantum numbern. The expectation values <r ?3> j for thenp valence electrons corrected for core polarization are compared with those derived from the2 P fine structure separation. Good agreement is achieved for allnp levels with the choice ofZ i =Z?3=34 for the effective nuclear charge number. The nuclear quadrupole moments of85Rb and87Rb are rederived on the basis of this more improved treatment for thep-electron-nucleus interaction yielding $$\begin{gathered} Q_N \left( {^{85} Rb} \right) = + 0.274\left( 2 \right) \cdot 10^{ - 24} cm^2 \hfill \\ Q_N \left( {^{85} Rb} \right) = + 0.132\left( 1 \right) \cdot 10^{ - 24} cm^2 \hfill \\ \end{gathered} $$ where the error does not include the remaining theoretical uncertainty of about 10%.  相似文献   

16.
Two new di-nitrogen centers, which were labeled M2 and M3, were found together with known W7 and N4 centers in an unusual reddish-brown natural diamond. The following magnetic hyperfine interaction parameters (expressed in MHz) were determined for the two nitrogen atoms:A 1 (1) =117.95(5),A 1 (2) =A 1 (3) =84.48(5),A 2 (1) =7.1(1),A 2 (2) =A 2 (3) =6.6(1) for M2 andA 1 (1) =121.55(5),A 1 (2) =A 1 (3) =85.90(5),A 2 (1) =6.0(1),A 2 (2) =5.4(1),A 2 (3) =5.1(1) for M3. Hyperfine interaction tensors for the nitrogen atom N1 with a larger interaction have axial symmetry about the <111> direction, but those for the other nitrogen atom, N2, appear to be small, almost isotropic. Probable models of the M2 and M3 centers are suggested and discussed.  相似文献   

17.
The pulsed electron electron double resonance (PELDOR) pulse sequence is applied to a three-spin system consisting of three radicals (Y D · , Y Z · and Q A ? ) generated in spinach PS II. The distance between YZ and QA has been determined to be 3.4 nm with the previously derived distances of the other radical pairs, 2.9 nm for Y D · -Y Z · and 3.9 nm for Y D · -Q A ? . This distance has been derived from the Y Z · -Q A ? radical pair trapped in YD-less mutants ofChlamydomonas reinhardtii. Furthermore the method was applied to the Y D · -Q A ? -Chl Z + system to find the unknown distance between QA and ChlZ. The derived distance was 3.4 nm. A triangular configuration was found in the membrane system that gives the relative positions of the electron transfer components.  相似文献   

18.
The data-taking phase of the Qweak experiment ended in May of 2012 at the Thomas Jefferson National Accelerator Facility. Qweak aims to measure the weak charge of the proton, Q W p , via parity-violating elastic electron-proton scattering. The expected value of Q W p is fortuitously suppressed, which leads to an increased sensitivity to physics beyond the Standard Model.  相似文献   

19.
The hyperfine fields Bhf (RbFe), Bhf (SrFe) and Bhf (YFe) have been determined by the low temperature nuclear orientation of dilute samples of83Rb,83,85Sr and85Ym in an iron lattice to be Bhf (RbFe)=+54 (10) kG, Bhf (SrFe)=(?)100 (30) kG and Bhf (YFe)=?226 (10) kG. These results are compared with recent calculations for these fields (1), (2).  相似文献   

20.
We point out properties of the “perpendicularev mass”, defined in terms of transverse momentap t byM T 2 (ev)=2|p eT | |p vT |?2p eT ·p vT , that make it particularly well suited toW mass and width determinations. We give an analytic expression for its distribution inW production and subsequentWev decay a \(\bar pp\) colliders, accurate to order 〈p WT 2 /M W 2 〉≈1%. A maximum likelihood fit of this formula to the five UA1 events givesM W=80.3 ?3 +6 GeV.  相似文献   

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