首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到20条相似文献,搜索用时 31 毫秒
1.
The absorption spectra of Na2[Fe(CN)5NO] · 2H2O were measured in the visible region in the range of 3400–7000 Å. In the metastable state, an additional absorption band in the long wavelength range is observed and the transition 2b2(dxy)→7e(π1?NO) becomes weaker in the excited state indicating a population of the π1(NO)-orbital. The laser excited emission spectrum shows a broad luminescence beginning at the excitation line λ = 5145A? (19,436 cm-1) with a maximum at about 6250 Å (16,000 cm-1). A strong sharp luminescence at about 7836 Å is registered and may be assigned to a transition 3b1(dx2?y2) or 5a1(dz2) to the antibonding π1(NO)- orbital. Further the broad luminescence is superimposed by a series of sharp spikes. These sharp spikes can also be observed for several days, when the laser is switched off, and are depending on the crystal orientation.  相似文献   

2.
Optical absorption spectra of Ni2+ in (NH4)2Mg(SO4)2·6H2O and Co2+ in Na2Zn(SO4)2·4H2O single crystals have been studied at room and liquid nitrogen temperatures. From the nature and position of the observed bands, a successful interpretation could be made assuming octahedral symmetry for both the ions in the crystals. The splitting observed for 3T1g(F) band in Ni2+ and 4T2g(F) band in Co2+ at liquid nitrogen temperature have been explained as due to spin-orbit interaction. The extra band observed at 16,325 cm-1 in the case of Ni2+ at low temperature has been interpreted to be the superposition of vibrational mode of SO2-4 radical on 3T1g(F) band. The observed band positions in both the crystals have been fitted with four parameters B, C, Dq and ζ.  相似文献   

3.
The infrared absorption spectrum of a single crystal of MoSe2 is reported. A damped oscillator fit to the fundamental band gives the transverse optic frequency, ΩTO = 277 cm-1 at 300° K and ΩTO = 283 cm-1 at 77° K. The static and high frequency dielectric constants have been determined as Ks = 16.81 and K = 10.24 respectively. An absorption band appears in the i.r. spectrum at 482 cm-1, and has been attributed to the oxygen impurity in the crystal.  相似文献   

4.
EPR of 61Ni+ doped CuGaS2 at 4.2 K leads to the following experimental data: g = 1.918 ± 0.006 A  < 12 × 10-4cm-1, g = 2.328±0.006 A = (65±2) × 10-4cm-1. High axial field splitting of 2T2 state stabilizes the center against Jahn-Teller interaction. Covalency reduction factor k is 0.76.  相似文献   

5.
Magnetic dipole transitions between the 2Π12 and 2Π32 components of the ground electronic state of BrO have been detected using the technique of laser magnetic resonance on three CO2 laser lines between 964 and 970 cm?1. This is the first direct observation of the 2Π12 state in BrO. The spin-orbit splitting parameter, A, is determined to be ?967.9831(2) cm?1 for 79Br16O and ?967.9981(2) cm?1 for 81Br16O. Accurate values for the rotational constant Beff(2Π12), the hyperfine parameters (bF + 2c3) and d, the Λ-doubling parameter p, and the Zeeman parameter g| are also determined from an analysis of the measured spectra.  相似文献   

6.
The branching ratio Λ(KS0→π+π?γ)Λ(KS0→π+π?) has been determined to be (2.68±0.15)×10?3 for photon energies Eγ1 greater than 50 MeV in the KS0 rest frame. The decay KS0π+π?γ is found to be dominated by the internal bremsstrahlung transition. The branching rato of a possible direct transition is found to be less than 0.06 × 10?3 at 90% confidence level for Eγ1 > 50 MeV.  相似文献   

7.
The (1-0), (2-0), and (3-0) transitions of 15N16O and 15N18O are investigated. The wavenumbers of the rotation-vibration lines are reported for the overtone bands and the 2Π32-2Π12 (1-0) subband. It is shown that in the data reduction it is advantageous to calculate first merged spectroscopic constants ignoring the Λ-type doubling. The vibrational constants ωe, ωexe, ωeye and the vibrational dependence of the rotational constants are determined. The study of 15N18O allows the determination of the equilibrium values of the centrifugal distortion correction ADe to the spin-orbit constant and of the spin-rotation constant γe from the isotopic invariance of the ratios ADeBe and γeBe. It is found that ADeBe = (?3.9 ± 1.3) × 10?6 and γeBe = (?4.00 ± 0.05) × 10?3.  相似文献   

8.
The wavenumbers of the vibration rotation band lines of 14N16O are reported for the 2Π12-2Π12, 2Π12-2Π12 and 2Π12-2Π12 subbands of the 1-0 transition in the infrared. The full set of spectroscopic constants for this band has been determined by direct approach using the analysis of Zare, Schmeltekopf, Harrop, and Albritton. In addition to the band origin ν0 and the B, D, H constants for the lower and upper vibrational levels, the following spin-orbit coupling constants have been derived: A?0 = 123.02772 ± 0.00011 and A?1 = 122.78248 ± 0.00011 (in cm?1). Apparent centrifugal corrections to these constants have been determined and the values obtained for them are A?D0 = (0.347573 ± 0.00051) × 10?3 and A?D1 = (0.337135 ± 0.00050) × 10?3cm?1. Λ-Type doubling constants evaluated by using both grating and tunable laser data are also reported.  相似文献   

9.
The emission of Ni2+ ions in MgO, KMgF3, KZnF3 and MgF2 crystals has been investigated. The fine structure on the bands at about 20 000 cm-1 and 13 000 cm-1 has been studied in detail and from this and the excitation spectra these bands are assigned to 1T2g3A2g and 1T2g3T2g transitions respectively.  相似文献   

10.
Laser-induced fluorescence excitation has been used to measure Stark splittings of selected lines in the A?1A2-X?1A1 and a?3A2-X?1A2 band systems of H2CS in electric fields up to 13 kV/cm. The derived excited state a-axis dipole moments are 0.820 ± 0.007 D for the 41 level of the 1A2 state; 0.838 ± 0.008 D for the zeroth vibrational level of 1A2; and 0.534 ± 0.015 D for the zeroth vibrational level of the 3A2 state. These results are compared with the corresponding values of H2CO, and interpreted in terms of the changing localization of the π and π1 orbitals accompanying electronic excitation.  相似文献   

11.
Experimental oscillator strengths are reported in absorption for the 2Dj-2Pj transitions of atomic chlorine using chemical titration for the quantitative production of Cl atoms. The closely spaced 2D52,32-2P3,2 doublet at 118.9 nm was resolved in emission using a 6.65 m normal incidence vacuum spectrometer. Multiplet emission ratios are combined with line absorption measurements to obtain the following absolute oscillator strengths: 2D32-2P32 (118.875 nm), 0.0050 ± 0.0010; 2D32-2P12 (118.877 nm), 0.068 ± 0.007; 2D32-2P32 (120.135 nm), 0.102 ± 0.010.  相似文献   

12.
Line strengths and self- and nitrogen-broadened half-widths were measured for spectral lines in the ν3 and ν2 + ν4 bands of 12CH4 and 13CH4 from 2870–2883 cm?1 using a tunable diode laser spectrometer. From measurements made over a temperature range from 215 to 297 K, on samples of 12CH4 broadened with N2, we deduced that the average temperature coefficients n, defined as bL0(T) = bL0(T0)(TT0)?n, of the Lorentz broadening coefficients for the ν3 and ν2 + ν4 bands of 12CH4 were 0.97 ± 0.03 and 0.89 ± 0.04, respectively. A smaller increase is observed in line half-width with increasing pressure for E-species lines, for both self- and nitrogen-broadening, than for other symmetry species lines over the range of pressures measured, 70 to 100 Torr.  相似文献   

13.
The energies of the n2P12 (7 ≤ n ≤ 13) and n2P32 (7 ≤ n ≤ 27) levels of CsI have been redetermined photographically from high resolution absorption measurements of the principal series lines 62S12? n2PJX. The new data disagree significantly [ ≈0.13 cm-1] with the values given in the NBS-Tables of Moore1 which are taken from a paper by Kratz.2 By means of an extended Ritz-formula, the ionization energy of CsI was found to be 31406.46±0.03 cm-1, which is, within the limit of uncertainty, in agreement with the data of Kleiman,3 Eriksson et al.,4 Bockasten,5 and Eriksson and Wenåker.6  相似文献   

14.
The E-B (0g+-0u+) band system of Br2 has been investigated at Doppler-limited resolution using polarization labeling spectroscopy. Merged E state data for the three naturally occurring isotopes in the range vE = 0–16, expressed in terms of the constants for 79Br2, are (in cm?1) Y0,0 = 49 777.962(54), Y1,0 = 150.834(22), Y2,0 = ?0.4182(28), Y3,0 = 6.6(11) × 10?4, Y0,1 = 4.1876(28) × 10?2, Y1,1 = ?1.607(16) × 10?4, and Y0,2 = 1.39(39) × 10?8. The bond distance is re = 3.194 A?, and the diabatic dissociation energy to Br+(3P2) + Br?(1S0) is 34 700 cm?1.  相似文献   

15.
Magnetic circular dichroism (MCD) and magnetic linear dichroism (MLD) measurements of the 3A2g1T2g absorption band in MgO:Ni2+ are reported. It is shown that for the lowest energy vibrational peak there is considerable evidence of splitting of the T2g × T1u vibronic levels by the electron-vibration interaction.  相似文献   

16.
Comparison between experimental absorption due to the 3T1(F)?3T1(P) transition of substitutional Ni2+(d8) in GaP and theoretical predictions based on the Jahn-Teller model is presented. Numerical solution of the Hamiltonian, in which spin-orbit interaction and T2-mode Jahn-Teller coupling are included, is in very good agreement with the energy position and intensities of the observed absorption lines.  相似文献   

17.
The quantum efficiency of fluorescence, Y, of the 4607.33 Å Sr line (1P1?1S0transition) was measured in four pre-mixed, laminar, shielded CO/N2O flames of about 2700 K, with different quantitative compositions at 1 atm. From these data, the specific quenching cross sections for O2, CO2, CO and N2 were found to be (152±20 Å2), (30±5 Å2), (49±8 Å2) and (16±3 Å2), respectively.  相似文献   

18.
The absorption and MCD spectra of the 4A2g4T2g, 4A2g, 4A2g4T1ga and 4A2g4T1gb spin-allowed transitions of Cr3+ in K2NaGaF6 are reported. It is shown that transitions to the 4T1g. states are induced by T1u vibratio the other spin-allowed transition, 4A2g4T2g, there are three competing intensity mechanisms: electric dipole induced by T1u vibrations, electric dipole induced by T2u vibrations and magnetic dipole, and an estimate is made of the relative importance of these. The magnetic dipole 4A2g2Eg zero-phonon line is observed to be accompanied by a vibrational sideband for which the coupling is predominantly with T2u vibrations. Other weak transitions are observed in MCD spectra and their origin briefly discussed.  相似文献   

19.
Discharges through mixtures of helium and neon show two band groups near 4250 and 4100 Å as first observed by Druyvesteyn. These bands, assigned to the HeNe+ ion by Tanaka, Yoshino, and Freeman, have been studied under high resolution and have been fairly completely analyzed. The upper state of the transition is a very weakly bound state resulting from He+(2S) + Ne(1S0). There are two lower states resulting from the two components of Ne+(2P) + He(1S0). The upper of these two (2Π12) is also very weakly bound while the lower of the two, the 2Σ+ ground state, has a dissociation energy of 0.69 eV and an re value of 1.30 Å. All bands in both band groups show four branches designated Rff, Qef, Qfe, and Pee. From their analysis the rotational constants in the various vibrational levels of the three electronic states have been determined. While no spin splitting in the B2Σ+ state has been found the ground state X2Σ shows a very large spin splitting and the A22Π12 state a very large Ω-type doubling. The vibrational numberings in all these states were established by the study of the spectrum of 3HeNe+. At the same time the hyperfine structure observed in all lines of 3HeNe+ confirmed the nature of the upper state B2Σ+ as resulting from He+ + Ne, i.e., by charge exchange from the ground state. The 2Π12 component of the 2Π state has not been observed, presumably because of low intensity.  相似文献   

20.
We have measured the Overhauser enhancement of the protons and the 19F-nuclei of the one-dimensional conductor (perylene)+2PF-6·23THF in its metallic phase at room temperature. The enhancement factor V was found to be VP=+320±20 for the protons and VF=+175±40 for the 19F-nuclei indicating a predominantly scalar interaction with the conduction electrons in both cases.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号