Recent Publications
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David M. Hanson

83. Evidence for Valence Hole Localization in the Auger Decay and Fragmentation of Carbon and Silicon Tetrafluorides, D.A. Lapiano-Smith, C.I. Ma, K.T. Wu, and D.M. Hanson, J. Chem. Phys. 90, 2162 (1989).

84. Spectral Diffusion in Molecular Aggregates, Yi Lin and David M. Hanson, J. Phys. Chem. 93, 1851 (1989).

85. Valence Hole Localization in Molecular Auger Decay, D.A. Lapiano-Smith, C.I. Ma, K.T. Wu, and D.M. Hanson, in Chemical Perspectives of Microelectronic Materials, edited by M. E. Gross, J. Jasinski, and J.T. Yates, Jr. (Materials Research Society, Boston, 1989) Vol. 131, p. 523.

86. Transition Stress and Configuration Interaction for Diatomic Molecules, Yongfeng Zhang and David M. Hanson, Chemical Physics 138, 71 (1989).

87. Chemistry Induced by Core Electron Excitation, David M. Hanson, in Advances in Chemical Physics, Vol. 77, edited by S.A. Rice and I. Prigogine (Wiley/Interscience, New York, 1990).

88. Auger Decay and Autoionization of Core Hole Excited States in Molecular Oxygen, D. Lapiano-Smith, K. Lee, C.I. Ma, K. Wu, and D.M. Hanson, J. Electron Spectrosc. Relat. Phenom. 51, 221 (1990).

89. Concentration Dependence of 4-Methylbenzophenone Choleic Acid Crystal Phosphorescence: Evidence for a Percolation Driven Structural Transformation, S.K. Kook, D.Y. Kim, and D.M. Hanson, Chem. Phys. Letters 164, 409 (1989).

90. Electronic Decay of Core Hole Excited States in Molecular Oxygen, D. Lapiano-Smith, K. Lee, C.I. Ma, K.T. Wu, and D.M. Hanson, J. Chem. Phys. 93, 2169 (1990).

91. Spectral Diffusion of Triplet Excitation Energy in Molecular Glasses and Doped Polymer Solids, S.K. Kook and D.M. Hanson, Chemical Physics 146, 303 (1990).

92. Multiparent Configuration Interaction Calculations of Low-Lying States of O22+, H. Yang, D.M. Hanson, F. v. Trentini, and J.L. Whitten, Chemical Physics 147, 115 (1990).

93. Angular Dependence of Photofragments from K-Shell Excited N2 and O2: Photoabsorption Anisotropy and Excited State Symmetry, K. Lee, D.Y. Kim, C.I. Ma, D.A. Lapiano-Smith, and D.M. Hanson, J. Chem. Phys. 93, 7936 (1990).

94. Single-Event, Energy-Resolved, Auger-Electron, Multiple-Ion, Coincidence Mass Spectroscopy, D.M. Hanson, C.I. Ma, K. Lee, D. Lapiano-Smith, and D.Y. Kim, J. Chem. Phys. 93, 9200 (1990).

95. Examination of the Pathways in the Soft X-ray (530.8 eV) Induced Fragmentation of O2 by Electron-Ion Coincidence Measurements, D.M. Hanson, D.A. Lapiano-Smith, K. Lee, C.I. Ma, and D.Y. Kim, Chemical Physics 162, 439 (1992).

96. Electron Rearrangement and Energy Relaxation Due to Core-Hole Creation in Molecules, Y. Zhang, Y. Zhou, Z. Luo, and D.M. Hanson, J. Phys. Chem. 96, 2949 (1992).

97. Origin of the Blue Bands in the Luminescence Spectrum of Core Excited O2, M. Mahalingam and D.M. Hanson, J. Chem. Phys. 97, 2183 (1992).

98. Core-Hole Excited States of H2O: Symmetries and Relative Oscillator Strengths, D.Y. Kim, K. Lee, C.I. Ma, M. Mahalingam, D.M. Hanson, and S.L. Hulbert, J. Chem. Phys. 97, 5915 (1992).

99. High Resolution Time-of-Flight Analysis of Photon Stimulated Ion Desorption from Chemically Treated Silicon (100) Surfaces, K. Mochiji, K. Lee, C.I. Ma, D.Y. Kim, M. Mahalingam, D.M. Hanson, and E.D. Johnson, J. Appl. Phys. 72, 4156 (1992).

100. Rotational Distributions of Molecular Ions Following Core Excitation and Decay, M. Mahalingam, K. Lee, and D.M. Hanson, J. Chem. Phys.98, 5239 (1993).

101. The Relevance of Gas-Phase Core-Electron Excitation and Decay Phenomena to Molecular Adsorbate Structure and Desorption, David M. Hanson, in Desorption Induced by Electronic Transitions DIET V, edited by A.R. Burns, E.B. Stechel, and D.R. Jennison (Springer-Verlag, New York, 1993) pp. 110- 115.

102. Donor- Acceptor Energy Transfer in Choleic Acid Crystals, S.K. Kook and D.M. Hanson, J. Phys. Chem. 97, 9578 (1993).

103. Application of Cluster Distributions to Energy Transfer in Naphthalene Choleic Acid Crystals, S.K. Kook, D.M. Hanson, and R. Kopelman, J. Phys. Chem.97, 12339 (1993).

104. Triplet Excitation Energy Transfer in Naphthalene Choleic Acid Crystals, S.K. Kook and D.M. Hanson, J. Phys. Chem. 98, 7239 (1994).

105. A Time-of-Flight Spectrometer for Use in Energy-Resolved, Auger-Electron, Multiple-Ion Coincidence Spectrometry, C.I. Ma, K. Lee, D.Y. Kim, and D.M. Hanson, Nuclear Instruments and Methods A 347, 453 (1994).

106. An Experimental Approach to Elucidating Selective Solid-State Photochemistry Induced by Monochromatic X-rays, S. Sambasivan, P.A. Hintz, S.L. Anderson, and D.M. Hanson, Nuclear Instruments and Methods A 347, 462 (1994).

107. High Resolution and High Sensitivity Instrumentation for Detection of Vis-UV Luminescence from Products of Core-Hole Decay, M. Mahalingam, K. Lee, De Ji, and D.M. Hanson, Nuclear Instruments and Methods A 347, 457 (1994).

108. Auger, Zero-Energy Photoelectron, Coincidence Spectroscopy (AZEPECO): Chemical-Site-Selective Auger Electron Spectroscopy, K. Lee, S.L. Hulbert, P. Kuiper, De Ji, and D.M. Hanson, Nuclear Instruments and Methods A 347, 446 (1994).

109. Identification of the Core-Hole Excited States of N2: A Failure of the Equivalent Core Approximation, K. Lee, D.Y. Kim, C.I. Ma, and D.M. Hanson, J. Chem. Phys. 100, 8550 (1994).

110. Photodissociation of SF6 Near the F-1s Absorption Edge, K. Mochiji, K. Lee, C.I. Ma, D.Y. Kim, M. Mahalingam, and D.M. Hanson, J. Vac. Sci. Technol. A 12, 216 (1994).
 
111. Photon Stimulated Ion Desorption from Semiconductor Surfaces, K. Mochiji, I. Ochiai, T. Ogawa, S. Yamamoto, N. Itabashi, K. Lee, and D.M. Hanson, Jpn. J. Appl. Phys., Part 1, 32, 6173 (1993).

112. Dynamical Behavior of Electronic States of NH32+ Prepared from N 1s Ionization of Ammonia, C.I. Ma, D.M. Hanson, K. Lee, and R.G. Hayes, J. Electron Spectrosc. Relat. Phenom. 75, 83 (1995).

113. Foundations of Chemistry, David M. Hanson (Pacific Crest Software, Corvallis, 1996).

114. An Instructor's Guide to Process Workshops, David M. Hanson (Houghton Mifflin, 1997).

115. Discovering Chemistry - An Activity Book for Collaborative Learning, David M. Hanson (Houghton Mifflin, 1997). Process - The Missing Element, David M. Hanson and Daniel K. Apple, J. Chem. Educ., submitted for publication.

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