Formation of CN(A 2Πi) fragment from BrCN in an argon flowing afterglow
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[1] G. Herzberg,et al. Molecular Spectra and Molecular Structure , 1992 .
[2] Kaoru Suzuki,et al. A Note on the Surprisal Analysis of Molecular Fragments Produced in a Two-Step Dissociation , 1989 .
[3] Kaoru Suzuki,et al. Violet emission of cyanogen produced in the reaction of argon(3P0,2) with cyanogen bromide. 1. Nascent vibrational and rotational distributions of CN(B2.SIGMA.+) , 1989 .
[4] P. Knowles,et al. The A 2Π–X 2Σ+ red and B 2Σ+–X 2Σ+ violet systems of the CN radical: Accurate multireference configuration interaction calculations of the radiative transition probabilities , 1988 .
[5] R. Martin,et al. Product rotational alignment in the excitation transfer reaction Ar(3P2)+N2→Ar+N2(C 3Πu) , 1987 .
[6] P. Dagdigian,et al. State‐resolved inelastic cross sections from CN A 2Π v=8 to X 2Σ+ v=12: Quenching of the even–odd alternation in the final rotational state populations , 1987 .
[7] T. Kondow,et al. Formation of the CN(B2Σ+) fragment from HCN in a discharged helium flow , 1986 .
[8] P. Dagdigian,et al. State‐resolved study of collisional energy transfer between A 2Π v=7 and X 2Σ+ v=11 rotational levels of CN , 1986 .
[9] T. Kondow,et al. Dissociative excitations of Fe(CO)5 and Fe(C5H5)2 in collision with helium metastable atoms , 1986 .
[10] K. Tabayashi,et al. Polarization of cyanogen(B2.SIGMA.+-X2.SIGMA.+) emission produced in collision of argon(3P0,2) with bromine cyanide (BrCN) , 1985 .
[11] Kaoru Suzuki,et al. Vibrational and rotational state distributions of CN(B 2Σ+) produced in collision of Xe(3P2) with CICN and BrCN , 1984 .
[12] Kaoru Suzuki,et al. Rotational perturbations in the CN (B 2Σ+-X 2Σ+) tail band system. I. Analysis of the υ = 27 and 30 levels of CN (A 2Πi) , 1983 .
[13] T. Kondow,et al. Dynamics of formation of CN(B2Σ+) fragment from HCN and DCN in an argon afterglow , 1983 .
[14] P. Hay,et al. Radiative Lifetimes for the A2II and B2SIGMA+ Electronic States of the CN Molecule , 1982 .
[15] J. Simons,et al. A crossed molecular beam study of the chemiluminescent reaction Xe(3P2,0) + BrCN → Xe(1S0) + Br + CN(B2Σ+) , 1980 .
[16] A. Yencha,et al. Analysis of anomalous vibrational and rotational distributions in the CN(B2Σ+) state produced in the reaction of Ar(3P0,2) metastables with BrCN , 1980 .
[17] I. Nishiyama,et al. Energy-transfer reactions of metastable argon ions with krypton in a flowing afterglow , 1979 .
[18] V. Bondybey,et al. Radiative decay and radiationless deactivation in selectively excited CN , 1979 .
[19] Michael J. Berry. Vibronic surprisal analysis of the dynamics of photodissociation and related reactions , 1974 .
[20] R. Levine,et al. Energy disposal and energy consumption in elementary chemical reactions. Information theoretic approach , 1974 .
[21] A. C. Wahl,et al. Ground and excited states of the diatoms CN and AlO , 1974 .
[22] J. Simons,et al. Further comments on energy partitioning in photodissociation and photosensitization: vacuum u.v. photolysis of cyanogen halides , 1974 .
[23] T. Urisu,et al. Violet and red emission bands of the CN radicals formed in the collision of metastable argon atoms with cyanides , 1974 .
[24] D. Levy,et al. Electric dipole moment of the A 2Π state of CN as measured by level anticrossing spectroscopy , 1973 .
[25] J. A. Coxon,et al. Excitation of CN violet (B2Σ+−X2Σ+) and red (A2Πi−X2Σ+) bands by reaction of Ar and Xe metastable atoms with CN‐containing compounds , 1973 .
[26] J. Hollas,et al. Geometry of cyanogen halide positive ions from photoelectron spectroscopy , 1971 .
[27] D. Davis,et al. Determination of Bond Dissociation Energies in Hydrogen Cyanide. Cyanogen and Cyanogen Halides by the Photodissociation Method , 1968 .