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1.
Autoionizing Rydberg levels of Li2 molecules in a supersonic molecular beam are populated by stepwise excitation with two tunable pulsed dye lasers. The observed autoionization spectra show severe perturbations. Based on calculations of quantum defects and a perturbation treatment of l-uncoupling a tentative assignment of Rydberg series up to n = 32 is proposed. The convergence limits of these series yield a value of IP = 41475 cm−1 for the adiabatic ionization potential and a vibrational constant ωe = 263 cm−1 for the X2Σ+g ground state of Li+2. The experimental results are compared with ab initio calculations combined with a core polarization potential, which yield the potential curve. the dissociation energy, the quadrupole moment and the vibrational frequency for the X2Σ+g ground state of Li+2, in the excellent agreement with experimental findings.  相似文献   

2.
The recombination of nitrogen atoms on polycrystalline samples of cobalt and nickel produces metastable electronically excited nitrogen molecules, probably N2(W3Δu), which are collisionally transferred to the N2(B3Πg) state. Information about vibrational relaxation of the metastable state by N2(X1Σ+g) is inferred from composition dependent changes in the observed first positive emission spectrum [N29A3Σ+g)−N2(B3Πg] with the aid of multilevel, steady-state, kinetic model.  相似文献   

3.
The continuous absorption spectrum of molecular bromine has been examined using laser induced photodissociation spectroscopy. In this technique, Br2 molecules are photolyzed using a flashlamp-pumped dye laser; the atomic products of the dissociation are then monitored by time-resolved resonance absorption spectroscopy in the vacuum ultraviolet. The relative absorptivities for the transitions B3Πo+u ← X1Σ+g and 1Π1u ← X1Σ+g have been obtained at 18350, 21010 and 22125 cm−1.  相似文献   

4.
A high-resolution (1–7 meV) threshold photoelectron spectroscopic study of IBr was performed using synchrotron radiation and a penetrating-field electron spectrometer over the valence ionization region of the molecule. Extensive vibrational structure was found in all three electronic-state band systems (X2Πi, A2Πi and B2Σ+) of IBr+. In the (X2Πi) band system both spin–orbit components exhibited extended vibrational structure in the Franck–Condon gap regions that is attributed to resonance autoionization of neutral Rydberg states lying in these energy regions. Analysis of this vibrational structure yielded accurate spectroscopic constants.  相似文献   

5.
The equilibrium geometries, excitation energies, force constants and vibrational frequencies for seven low-lying electronic states X 1A1, 1B1, 3B1, 1A2, 3A2, 1B2 and 3B2 of dichlorocarbene CCl2 have been calculated at the MRSDCI level with a double-zeta plus polarization basis set. Our calculated equilibrium geometry for the X 1A1 state, excitation energy for X 1A11B1 and vibrational frequencies for the X 1A1 and 1B1 states are in good agreement with experimental data. The electronic transition dipole moments, oscillator strengths for the 1B1 → X 1A1 and 1B2 → X 1A1 transitions, radiative lifetimes for the 1B1 and 1B1 states are calculated using MRSDCI wavefunctions, predicting results in reasonable agreement with experiment.  相似文献   

6.
A mixture of NF3 and Ar is passed through an rf discharge in a flow-system to produce, among other species, F and NF2. When H2, D2, or CH4 are added downstream, reactions with F atoms produce vibrationally excited HF or DF together with H, D, or CH3. The latter free radicals can react with NF2, probably by an elimination reaction to produce electronically excited NF: NF2(2B1) + H(D, CH3) → HF*(DF* + NF(a1Δ). A vibrational-to-electronic energy transfer process between the products of this reaction then produces the next higher state of NF: HF(ν 2) + NF(a1Δ) → HF(ν−2) + NF(b1Σ+). A similar transfer process has also been found between the electronically excited a1Δ states of O2 and NF: O2(a1Δ) + NF(a1Δ) → O2(X3Σ) + NF(b1Σ+). The H or D atoms but not the CH3 radicals are then found to react with either NF(a1Δ) or NF(X3Σ) to produce electronically excited N(2D) atoms, which in turn react with the NF(a1Δ) molecules to produce N2(B3Πg). The observed nitrogen first positive radiation has been demonstrated to be produced entirely by this reaction mechanism rather than by the N(4S) recombination that accounts for the Rayleigh afterglow. In addition, the occurrence of the reaction N(2D) + N2O → NO(B2Πr) + N2 (X1Σ+g) has been verified. Finally we have observed emission at 3344 Å, which we attribute to the NF(A3Π), which has not been previously reported.  相似文献   

7.
The radiative lifetimes of nine vibrational levels of the C3(1Πu) radical were obtained from decay time studies of the C3(1Πu1Σ+g) fluorescence induced by a tunable dye laser. The lifetimes of the different vibronic levels were found to be constant within the experimental error limits, namely, τo = (200 ± 10) ns. The collisional deactivation of the C3(1Πu) states by helium gives rate constants between 2.5 and 4 in 10−11 cm3 molecule−1 s−1 units.  相似文献   

8.
A laser pulse-and-probe method has been used to determine the nascent vibrational populations in NO(v=0–4) and O2(v=6–11) formed in the thermal reaction: O(3P) + NO2 → O2(v) + NO(v). A frequency-tripled Nd: YAG laser is used to photolyse NO2, diluted tenfold in Ar, and laser-induced fluorescence spectroscopy in the NO A 2Σ+-X 2Π and O2 B 3Σu -X 3Σg electronic band system is used both to follow the kinetics of individual vibrational states and to determine the nascent vibrational distributions. The majority of the NO product is formed in v = 0 and the average vibrational yield is ≈ 4.6%. The O2 populations fall monotonically from v = 6 to 11 in a distribution close to what is expected on prior grounds. Based on a surprisal analysis, the average vibrational energy yield in O2 is ≈ 26%. The nature of the reaction dynamics is discussed.  相似文献   

9.
Large-scale ab initio coupled cluster and multi-reference configuration interaction calculations (MRD-CI) are carried out to determine the equilibrium geometry and the vertical electronic spectrum of linear C5+. Contrary to prior theoretical estimates we find three low-lying states within an energy range of 0.3 eV: 2Σu+, 2Σg+ and 2Πg and a symmetric arrangement of nuclei. Transitions from 2Σu+ to these low-lying states are dipole-allowed; sizeable oscillator strengths are computed for the 2Π+g←X2Σu+ transition at 2.62 eV and the 2Σg←X2Σu+ transition at 3.36 eV and should give a guide to spectroscopic identification of linear C5+.  相似文献   

10.
The mechanism of the H2NO(2B1)→NO(2Π)+H2 reaction has been examined using ab initio molecular orbital methods. Ground-state and first-excited-state potential surfaces were plotted at the FOCI/cc-pVTZ level of theory as functions of two appropriate internal degrees of freedom. A conical intersection was found on the Cs pathway that is symmetric with respect to the plane perpendicular to the molecular plane of C2v H2NO(2B1). It is therefore considered that trajectories that start from H2NO(2B1) towards the product region detour around the conical intersection, pass through the neighborhood of the transition state that is located at the saddle point on the Cs pathway, and finally reach the products, NO(2Π)+H2. Thus we can explain the mechanism of the H2NO(2B1)→NO(2Π)+H2 reaction, which has remained unclear to date.  相似文献   

11.
Large-basis-set calculations of near Hartree-Fock accuracy were performed on CO+(1σ-hole 2Σ+) and CO+)2σ-hole, 2Σ+); correlation energies for these systems and for CO were calculated using an atoms-in-molecule approach, relativistic energies and vibrational structure corrections were also considered. The results are: IP(CO, 1σ) = 542.4 (542.57) eV, IP(CO,2σ) = 297.0 (296.24) cV, Dc(CO, 1Σ+) = 10.8 (11.1) Ev, D3(CO+, 1σ, 2Σ+) = 11.9 eV, De(CO+, 2σ, 2Σ+) = 9.1 eV, where IP and De stand respectively for ionization potential and dissociation energy, and where the numbers in parentheses refer to the most recent experimental values. The electron transfers resulting from the ionization of inner-shell electrons are discussed. Finally a quantitative correlation is developed correlating absolute chemical shifts to charge densities. Agreement between the calculated values and those derived from the correlation is quite satisfactory.  相似文献   

12.
Single and multiple photon processes are identified in the 193 nm excimer laser photolysis of CS2. CS(X1Σ+, υ = 1 to 5, J = 5 to 45) is observed by dye laser induced fluorescence of the A1Π ↔ ; X1Σ+ transition, following the single photon 193 nm photolysis of CS2. Multiple photon 193 nm generation of CS fragment emission from 620 to 170 nm is also reported. A partial assignment of the emission spectrum identifies fluorescence from the CS A′1Σ+ and A1Π states.  相似文献   

13.
Saddle point geometries and barrier heights have been calculated for the H abstraction reaction HO2(2A″)+H(2S) → H2(1Σ+g)+O2(3Σg) and the concerted H approach-O removing reaction HO2 (2A″)+H(2S) → H2O(1A1)+O(3P) by using SDCI wavefunctions with a valence double-zeta plus polarization basis set. The saddle points are found to be of Cs symmetry and the barrier heights are respectively 5.3 and 19.8 kcal by including size consistent correction. Moreoever kinetic parameters have been evaluated within the framework of the TST theory. So activation energies and the rate constants are estimated to be respectively 2.3 kcal and 0.4×109 ℓ mol−1 s−1 for the first reaction, 20.0 kcal and 5.4.10−5 ℓ mol−1 s−1 for the second. Comparison of these results with experimental determinations shows that hydrogen abstraction on HO2 is an efficient mechanism for the formation of H2 + O2, while the concerted mechanism envisaged for the formation of H2O + O is highly unlikely.  相似文献   

14.
A three-dimensional potential energy function has been calculated for the X1Σ+g state of NO+2 from ab initio MRD-CI data. With this PE function, converged vibrational calculations have also been performed for ten vibrational states, with the aid of a computer program developed in the present work for this purpose. The calculated harmonic frequencies, vibrational term values and rotational constants are in good agreement with experimental data.  相似文献   

15.
The absorption spectrum of the benzene—oxygen contact complex from 2350 to 2120 Å has been derived from the difference in the absorption spectra of benzene vapour (70 torr) in the presence and absence of oxygen (760 torr). The complex has an absorption maximum at 2190 Å (5.65 eV), corresponding to a formation energy of 0.42 eV from 1B1U benzene and 3Σg oxygen, and of 2.90 eV from the benzene cation and oxygen anion. The excited complex has an electric dipole length of 5.0 Å. The data are compared with those for benzene complexes with other electron acceptors.  相似文献   

16.
The radiative lifetimes of the b1Σ+ and a1Δ states have been evaluated by perturbation expansions including X3Σ, a1Δ, b1Σ+, 13,1Π, 23,1Π, 23Σ and 21Σ+ states. All wavefunctions result from large MRD CI calculations. The b—X transition is dominated by the parallel transition moment; it is found to be much stronger than the a—X transition. The calculated radiative lifetimes of τ(1Σ+)=18 ms, τ(1Δ)=2.2 s for NF and τ(1Σ+)=2.5–3.5 ms for NCl are in good accord with corresponding experimentally deduced values. The lifetime for the a1Δ state in NCl is found to be τ(1Δ)=1.1 s, ie. much longer than derived from a recent experiment. Its magnitude is consistent with the τ(b1Σ+)/τ(a1Δ) ratio of similar systems and with the decrease in lifetime from NF to NCl and is thus believed to be quite reliable. A detailed analysis of all contributions of the perturber states to the transition mechanism is made and comparison with the related data in SO, O2 and S2 is undertaken. The b-a transition probability dominated by the quadrupole transition is fairly constant in all the systems in the order of A = 0.013 (NF) - 0.0013 (S2) s−1.  相似文献   

17.
The 12B1(X2B1), 12B2, 12A1, 12A2, 22B2, and 22A1 states of the ion were studied using CASPT2 and CASSCF methods. Calculations suggest that one should consider the 32A′ state instead of 22B2. The CASPT2 T0 calculations predict the energy ordering of 12B1(X2B1), 12B2, 12A1, 12A2, 32A′, and 22A1, which is in line with the experimental results by Pradeep and Shirley. The CASPT2 T0 values for the 12B2, 12A2, 32A′, and 22A1 states are close to the experimental values. The F-loss and H-loss dissociation processes were studied at the CASPT2//CASSCF level. The energy levels of low-lying states of are compared.  相似文献   

18.
Ab initio calculations were performed to study the molecular structures and the vibrational levels of the low-lying ionic states (2B1, 2A1 and 2B2) of hydrogen sulphide. The equilibrium molecular structure and the vibrational analysis of these states are presented. The normal vibrational calculations at the RHF level and more extensive calculations at the SDCI level using the explicit vibrational Hamiltonians were used for the vibrational analysis. The theoretical ionization intensity curves including the vibrational structures of these ionic states are also presented and compared with the photoelectron spectrum. The results show that the global shape of the potential energy surface has to be taken into consideration in order to analyze the 2A1 and 2B2 states. A new assignment of the photoelectron spectra of H2S is proposed.  相似文献   

19.
The 4067 Å line of the krypton-ion laser covers two transitions in the BO+u-X O+g system of 130Te2, R(36) in the 16-0 band and R(172) in the 18-0 band. Subsequent fluorescence has been recorded by Fourier transform spectrometry in the range 5900 to 15000 cm−1. Many transitions, with v' in the range 0 to 47, have been assigned to a new system, B O+u-b1+g, and vibrational and rotational constants for the new state have been derived. The value of Te for b Ig+ is about 9600.2 cm−1.  相似文献   

20.
We have combined the high sensitivity of the ICLAS technique with the rotational cooling effect of a slit jet expansion in order to observe and to understand the visible and near infrared NO2 spectrum. By this way, an equivalent absorption pathlength of several kilometers through rotationally cooled molecules has been achieved. Due to the vibronic interaction between the two lowest electronic states, 2A1 and à 2B2, this spectrum is vibronically dense and complex. Moreover, the dense room temperature rotational structure is perturbed by additional rovibronic interactions. In contrast, the rotational analysis of our jet cooled spectrum is straightforward. The NO2 absorption spectrum is vanishing to the IR but, owing to the high sensitivity of the ICLAS technique, we have been able to record the NO2 spectrum down to 11200 cm−1 with a new Ti:sapphire ICLAS spectrometer. As a result 249 2B2 vibronic bands have been observed (175 cold bands and 74 hot bands) in the 11200–16150 cm−1 energy range. Due to the cooling effect of the slit jet we have reduced the rotational temperature down to about 12 K and at this temperature the K = 0 subbands are dominant. Consequently, we have analysed only the K = 0 manifold for N 7 of each vibronic band. The dynamical range of the band intensities is about one thousand. Due to the strong vibronic interaction between the 2A1 and à 2B2 electronic states, we observed not only the a1 vibrational levels of the à 2B2 state but also the b2 vibrational levels of the 2A1 state interacting with the previous ones. By comparison with the calculated density of states, we conclude that we have observed about 65% of the total number of 2B2 vibronic levels located in the studied range. However, there are more missing levels in the IR because of the weakness of the spectrum in this range. The correlation properties of this set of vibronic levels have been analysed calculating the power spectrum of the absorption stick spectrum which displays periodic motions: the dominant period, at 714 ± 20 cm−1, corresponds to the bending motion of the à 2B2 state. The other observed periods remain unassigned. In contrast the next neighbor spacing distribution (NNSD) shows a strong level repulsion, i.e. a manifestation of quantum chaos. These two observations, apparently contradictory, can be rationalized as follows: the short time dynamics, for t < 10−12 s, is “regular” while for longer times the dynamics becomes “chaotic”. We suggest that this behavior may be observed directly with a pump and probe fs laser experiment.  相似文献   

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