Publications of John M. Parson

1. Parson, J. M., Schaefer, T. P., Siska, P. E., Wong, Y. C., and Lee, Y. T. (1970). Intermolecular Potentials from Crossed Beam Differential Elastic Scattering Measurements. I. Ne + Ar, Ne + Kr, and Ne + Xe. J. Chem. Phys. 53, 2123.

2. Parson, J. M., Schaefer, T. P., Siska, P. E., Tully, F. P., Wong, Y. C., and Lee, Y. T. (1970). Intermolecular Potentials from Crossed Beam Differential Elastic Scattering Measurements. II. Ar + Kr and Ar + Xe. J Chem. Phys. 53, 3755.

3. Siska, P. E., Parson, J. M., Schaefer, T. P., and Lee, Y. T. (1971). Intermolecular Potentials from Crossed Beam Differential Elastic Scattering Measurements. III. He + He and Ne + Ne. J. Chem. Phys. 55, 5762.

4. Parson, J. M., Siska, P. E., and Lee, Y. T. (1972). Intermolecular Potentials from Crossed Beam Differential Elastic Scattering Measurements. IV. Ar + Ar. J. Chem. Phys. 56, 1511.

5. Siska, P. E., Parson, J. M., Schaefer, T. P., Tully, F. P., Wong, Y. C., and Lee, Y. T. (1970). Effect of Nuclear Symmetry in Atom-atom Scattering. Phys. Rev. Lett. 25, 271.

6. Schaefer, T. P., Siska, P. E., Parson, J. M., Tully, F. P., Wong, Y. C., and Lee, Y. T. (1970). Crossed Molecular Beam Study of F + D2. J Chem. Phys. 53, 3385.

7. Parson, J. M. and Lee, Y. T. (1972). Crossed Molecular Beam Study of F + C2H4, C2D4. J Chem. Phys. 56, 4658.

8. Hanley, H. J. M., Barker, J. A., Parson, J. M., Lee, Y. T., and Klein, M. (1972). Comments on the Interatomic Potential for Argon. Mol. Phys. 24, 11.

9. Parson, J. M., Shobatake, K., Lee, Y. T., Rice S. A. (1973). Unimolecular Decomposition of the Long-lived Complex Formed in the Reaction F + C4H8. J. Chem. Phys. 59, 1402.

10. Shobatake, K., Parson, J. M., Lee, Y. T., and Rice, S. A. (1973). Laboratory Angular Dependence and the Recoil-energy Spectrum of the Products of the Reaction F + C6D6 D + C6D5F. J. Chem. Phys. 59, 1427.

11. Shobatake, K., Parson, J. M., Lee, Y. T., and Rice, S. A. (1973). Unimolecular Decomposition of Long-lived Complexes of Fluorine and Substituted Mono-olefins, Cyclic Olefins, and Dienes. J. Chem. Phys. 59, 1416.

12. Parson, J. M., Shobatake, K., Lee, Y. T., and Rice, S. A. (1973). Substitution Reactions of Fluorine Atoms with Unsaturated Hydrocarbons: Crossed Molecular Beam Studies of Unimolecular Decomposition. Far. Discuss. 55, 344.

13. Farrar, J. M., Parson, J. M., and Lee, Y. T. (1974). Rotational Excitation of Linear Triatomic Molecules, Argon + Carbon Dioxide, Argon + Nitrous Oxide. Resumes Conf. Commun., Symp. Int. Jets Mol., 4th, p. 19.

14. Manos, D. M. and Parson, J. M. (1975). Crossed Molecular Beam Study of Chemiluminescent Reaction of Group IIIB Atoms with O2. J. Chem. Phys. 63, 3575.

15. Liu, K. and Parson, J. M. (1976). Deactivation of Hg(3P2) in Crossed Molecular Beams. J. Chem. Phys. 65, 815.

16. Liu, K. and Parson, J. M. (1977). Laser Fluorescence Detection of Nascent Product State Distributions in Reactions of Sc and Y with O2, NO, and SO2. J. Chem. Phys. 67, 1814.

17. Liu, K. and Parson, J. M. (1978). Mechanisms of Central O-atom Reactions: A Molecular Beam, Laser-induced Fluorescence Study of Group IIIb + ROH Systems. J. Chem. Phys. 68, 1974.

18. Manos, D. M. and Parson, J. M. (1978). Chemiluminescent Reactions of Group IIIb Atoms with O2: Spectral Simulations and Extended Energy Dependence. J. Chem. Phys. 69, 231.

19. Liu, K. and Parson, J. M. (1979). Laser Fluorescent Studies of Carbonyl and Carboxylic Acid Oxygen Atom Atstraction Reactions by Group 3b Atoms. J. Phys. Chem. 83, 970.

20. Schwenz, R. W. and Parson, J. M. (1980). Molecular Beam Chemiluminescent Reactions of Cu(2D) with Cl2, Br2, and I2. Chem. Phys. Lett. 71, 524.

21. Schwenz, R. W. and Parson, J. M. (1980). Molecular Beam Study of the Cu + F2 Chemiluminescent Reactions. J. Chem. Phys. 73, 259.

22. Schwenz, R. W., Geiger, L. C., and Parson, J. M. (1981). Beam Gas Study of Chemiluminescence from Single Collisions of Group IIIa Metals with F2. J. Chem. Phys. 74, 1736.

23. Parson, J. M., Geiger, L. C., and Conway, T. J. (1981). Crossed Beam Chemiluminescent Studies of Titanium and Vanadium with O2. J. Chem. Phys. 74, 5595.

24. Schwenz, R. W. and Parson, J. M. (1982). Chemiluminescence from Reaction of Group IIIa Metals with F2 under Crossed-beam Conditions. J. Chem. Phys. 76, 4439.

25. Rosano, W. J. and Parson, J. M. (1983). Beam Gas Study of Chemiluminescent Reaction of Sn, Ge, and Si with F2. J. Chem. Phys. 79, 2696.

26. Ishikawa, T. and Parson, J. M. (1983). Vibrational Distributions of AlF(a3) Produced by Crossed Beam Collisions of Al and F2 at Two Kinetic Energies. J. Chem. Phys. 79, 4261.

27. Parson, J. M. and Ishikawa, T. (1984). Intramultiplet Mixing Collisions of Chromium 3d54p 7PJo with Gases: Absolute Cross Sections and Velocity Dependence. J. Chem. Phys. 80, 3137.

28. Parson, J. M. (1984). Intramultiplet Mixing Collisions of In 5p 2PJ with Molecules. Absolute Cross Sections and Collision Energy Dependence. J. Phys. Chem. 88, 2243.

29. Schwenz, R. W. and Parson, J. M. (1986). Chemiluminescent Reaction of Al2 with F2. Chem. Phys. Lett. 123, 453.

30. Parson, J. M. (1986). Chemiluminescence from Associative Cr + O2 Collisions. J. Phys. Chem. 90, 1811.

31. Rosano, W. J. and Parson J. M. (1986). Chemiluminescent Reactions of the IVA Elements: Dihalide Formation. J. Chem. Phys. 84, 6250.

32. Rosano, W. J. and Parson, J. M. (1986). Excitation Functions of the the Chemiluminescent Reaction of the Ground State IVA Atoms with F2. J. Chem. Phys. 84, 6261.

33. Rosano, W. J. and Parson, J. M. (1986). Chemiluminescence of Metastable Tin with Fluorine, Chlorine, and Nitrogen Trifluoride Utilizing a Beam-gas Configuration. J. Chem. Phys. 85, 2644.

34. Parson, J. M., Wang, J. H., Fang, C. C., and Cheong, B. S. (1988). Chemiluminescent Reactions of Sn2, Ge2, and Si2 with O2. Chem. Phys. Lett. 152, 330.

35. Wang, J. H., Cheong, B. S., and Parson, J. M. (1989). Chemiluminescent Reactions of Ground and Metastable States of the Group IVA Elements with Halogens. J. Chem. Phys. 91, 2834.

36. Parson, J. M. and Fang, C. C. (1990). Effects of Initial Electronic and Translational Energy on Chemiluminescent Reactions of Cu with F2. J. Chem. Phys. 92, 4823.

37. Cheong, B. S., Wang, J. H., and Parson, J. M. (1990). Product Vibrational Distributions and Collision Energy Dependence of Chemiluminescent Reactions of Group IVA Elements with O2, N2O, and NO2. J. Chem. Phys. 92, 4839.

38. Wang, J. H., Cheong, B. S., Fang, C. C., and Parson, J. M. (1990). Chemiluminescent Reactions of Group IVA Atoms with PCl5 and SnCl4. J. Chem. Phys. 93, 7830.

39. Oberlander, M. D., Kampf, R. P., and Parson, J. M. (1991). Chemiluminescent Reactions of Ca with Hydrogen Peroxide. Chem. Phys. Lett. 176, 385.

40. Fang, C. C. and Parson, J. M. (1991). Laser-Induced Fluorescence Study of the Reactions Cu + X2 CuX (X = F, Cl, Br, and I). J. Chem. Phys. 95, 6413.

41. Oberlander, M. D. and Parson, J. M. (1992). Beam-Gas Study of Bismuth-Fluorine Reactions Using Laser Induced Fluorescence of BiF. J. Chem. Phys. 97, 150.

42. Parson, J. M., Cheong, B. S., Kampf, R. P., and Oberlander, M. D. (1992). Effects of Electronic Excitation and Dimerization of Metals on Product State Distributions. Gas-Phase Metal Reactions. Fontijn, A., ed. (North-Holland, Elsevier, Amsterdam). Chap. 17

43. Oberlander, M. D. and Parson, J. M. (1993). A Laser-induced Fluorescence Study of the BiF A 0+ X1 0+ System in the Region 6550 to 7400 Å: Rotational Analysis and Evidence for an A 0+ State Potential Maximum. J. Chem. Phys. 99, 2365.

44. Cheong, B. S., Oberlander, M. D., Kampf, R. P., and Parson, J. M. (1993). Chemiluminescent Reaction of Bismuth with F2. J. Chem. Phys. 99, 5104.

45. Cheong, B. S. and Parson, J. M. (1994). Chemiluminescent Reactions of Group 2 (Ca, Sr, and Ba) Elements with H2O2, t-BuOOH, HNO3, and NO2: Reactivities and Product State Distributions. J. Chem. Phys. 100, 2637.

46. Oberlander, M. D. and Parson, J. M. (1996). Laser Excited Fluorescence Study of Reactions of Excited Ca and Sr with Water and Alcohols: Product Selectivity and Energy Disposal. J. Chem. Phys. 105, 5806.

47. Kampf, R. P. and Parson, J. M. (1998). Chemiluminescent pathways in reactions of phosphorus, antimony and bismuth with ozone to form dioxides and monoxides. J. Chem. Phys. 108, 7595.

48. Green, K. M., Kampf, R. P., and Parson, J. M. (2000). Molecular beam study of the chemiluminescent reaction of manganese and ozone. J. Chem. Phys. 112, 1721.

49. Green, K. M. and Parson, J. M. (2004). Chemiluminescent reactions of manganese with fluorine: Influence of dynamics on product energy partitioning in vibration and rotation of MnF*(b,c). J. Chem. Phys. 121, 11760.