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101.
The hyperfine structure splitting of the 72 P 3/2 state of Rb85 and Rb87 has been measured with optical double resonance. The following hfs interaction constants have been obtained: Rb85:A 7p 85 =3.71(1) MHz;B 7p 85 =3.68 (8)MHz. Rb87:A 7p 87 =12.57(1) MHz;B 7p 87 =1.71 (3)MHz. These values yield quadrupole moments ofQ 7p,hfs 85 =+0.316(7) barn andQ 7p,hfs 87 =+0.147(2)barn which are reduced by application of the Sternheimer correction toQ 7p 85 =+0.267(6) barn andQ 7p 87 =+0.124(2) barn. The averaged ratio of the uncorrected values of Qhfs in the 5p and 7p 2 P 3/2 stake isQ 5p,hfs/Q 7p,hfs=1.07(3). This has to be compared with the correction factors for polarization of the core of electrons by the nuclear quadrupole moment (1?R)5p/(1?R)7p=1.07. The agreement between the measured and calculated ratio indicates a net antishielding of the nuclear quadrupole moments of rubidium by the core of electrons as has been predicted bySternheimer. The lifetime of the 72 P 3/2 state of the RbI-spectrum is:τ(72 P 3/2, Rb)=2.4(2)·10?7 sec.  相似文献   
102.
The lifetime of the 3d 9 4s 4p 4 P 3/2 state of Cu has been determined with optical double resonance by observation of radiofrequency transitions ΔF=0, Δm F =±1 between hfs-Zeeman levels of the stable odd isotopes. The result is τ(3d 9 4s 4p 4 P 3/2, Cu)=3.18(16)·10?7 sec.  相似文献   
103.
Transient signals measured with a pulsed rf-optical pumping method are used to determine longitudinal relaxation rates for Sr+ ions (even isotopes) in noble gas buffers. Depolarization cross sections of the electronic spin in the Sr+52 S 1/2 ground state for binary collisions with rare gas atoms are deduced. The results for σ(Sr+52 S 1/2) in Å2 are (at temperatures between 374 and 449 °K): 2·10?5(He),4·10?5(Ne), 5.7·10?3(Ar), 1.8·10?2(Kr), and 4.0·10?2(Xe). These cross sections for the Sr+ ion are about two to three orders of magnitude larger than the corresponding ones for the isoelectronic neutral Rb atom. The large increase of the Sr+ relaxation rates is explained with the relaxation mechanism of spin-orbit coupling, taking into account two “indirect” effects of the ionic charge: the increase in the gas kinetic cross sections and the more intimate collisions of the Sr+ ion with the noble gas atoms. The depolarization is shown to be predominantly due to short-range interactions. A contribution to the relaxation of the Sr+ ion from Sr+-noble gas molecule formation, induced by three-body or resonant two-body collisions, could not be established for applied pressuresp between 1.5 and 15 Torr of Ar, Kr, and Xe.  相似文献   
104.
The hyperfine structure splitting of the 72 P 3/2 state of Cs134 has been measured by optical double resonance spectroscopy in zero magnetic field. The following interaction constants have been obtained: Magnetic hfs constantA(72 P 3/2, Cs134)=16.851 (16) MHz. Quadrupole coupling constantB(72 P 3/2, Cs134)=18.07 (12) MHz. Then the electric quadrupole moment of Cs134 can be calculatedQ hfs(Cs134)=+0.436 (3) barn without Sternheimer correction, andQ(Cs134)=+0.356(2) barn with Sternheimer correction. A method for the production of alkali resonance cells with quantities of less than 1014 atoms of the radioactive isotope is described.  相似文献   
105.
Nuclear spectroscopic quadrupole moments of the radioactive isotopes 131Cs, 132Cs, and 136Cs have been determined from the hyperfine structure of the 62P32 state by the level crossing method. The results including a Sternheimer correction are: Qs(131Cs) = ?0.625(6) b, Qs(132Cs) = +0.508(7) b, Qs(136Cs) = +0.225(10) b. The quadrupole moments of all the Cs isotopes from A = 131 to A = 137 are recalculated. It is shown, that nuclear quadrupole moments of a specific isotope obtained from different atomic P-states only agree within the limits of error after application of the Sternheimer correction. The increase of Qs with decreasing neutron number conforms with other observations and theoretical calculations stating that for elements around Z = 55 nuclear deformation develops below N = 82. The staggering of the sign of Qs may be interpreted as consequence of an oblate-prolate degeneracy of the nuclear energy surface. Some magnetic moments have been slightly improved: μI(132Cs) = 2.219(7) μN, μI(136Cs) = 3.705(15)μN (corrected for diamagnetism).  相似文献   
106.
Zusammenfassung Die aus der Addition von Schwefel und Selen an nach verschiedenen Methoden dargestellte Isonitrile resultierenden Isothio- und Isoselenocyanate werden durch Behandlung mit Aminen und Hydrazin-Verbindungen in guten Ausbeuten in die entsprechenden Thio- bzw. Selenoharnstoffe und- semicarbazide übergeführt.  相似文献   
107.
The Doppler-limited rotational spectrum of the NH radical in its electronic (X) and vibrational ground state has been measured using the frequency stabilized Cologne side-band spectrometer in the frequency region near 2 THz. The nitrogen 14N nuclear hyperfine patterns have been observed accompanying the resolved fine (JJ″) structure of the N=2←1 rotational transition. The observed peak frequencies were analyzed in detail together with the previously measured hyperfine frequencies of the N=1←0 rotational transition and with combination differences obtained from the high-resolution electronic spectra to derive precise rotational, centrifugal distortion, fine, and hyperfine parameters. In the numerical analysis the essential attention has been paid to partly resolved and unresolved hyperfine structures. The peak positions of the partly or fully overlapped lines were analyzed with the help of a profile simulation with estimated half-widths and calculated relative intensities and in this manner the least square fit of the unresolved and partly resolved lines was significantly improved. The NH radical is an extremely important species in nitrogen chemical reaction networks in the interstellar medium and atmospheric chemistry.  相似文献   
108.
A higher precision measurement of the anomalous g value, a(mu)=(g-2)/2, for the positive muon has been made at the Brookhaven Alternating Gradient Synchrotron, based on data collected in the year 2000. The result a(mu(+))=11 659 204(7)(5)x10(-10) (0.7 ppm) is in good agreement with previous measurements and has an error about one-half that of the combined previous data. The present world average experimental value is a(mu)(expt)=11 659 203(8)x10(-10) (0.7 ppm).  相似文献   
109.
110.
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