4 results on '"J. Jang"'
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2. Quantum Mechanics for Chemistry
- Author
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Seogjoo J. Jang and Seogjoo J. Jang
- Subjects
- Physics, Astronomy, Physical chemistry, Atomic structure, Molecular structure, Chemistry, Physical and theoretical, Quantum physics, Chemometrics
- Abstract
This textbook forms the basis for an advanced undergraduate or graduate level quantum chemistry course, and can also serve as a reference for researchers in physical chemistry and chemical physics. In addition to the standard core topics such as principles of quantum mechanics, vibrational and rotational states, hydrogen-like molecules, perturbation theory, variational principles, and molecular orbital theories, this book also covers essential theories of electronic structure calculation, the primary methods for calculating quantum dynamics, and major spectroscopic techniques for quantum measurement. Plus, topics that are overlooked in conventional textbooks such as path integral formulation, open system quantum dynamics methods, and Green's function approaches are addressed. This book helps readers grasp the essential quantum mechanical principles and results that serve as the foundation of modern chemistry and become knowledgeable in major methods of computational chemistry and spectroscopic experiments being conducted by present-day researchers. Dirac notation is used throughout, and right balance between comprehensiveness, rigor, and readability is achieved, ensuring that the book remains accessible while providing all the relevant details. Complete with exercises, this book is ideal for a course on quantum chemistry or as a self-study resource.
- Published
- 2023
3. Dynamics of Molecular Excitons
- Author
-
Seogjoo J. Jang and Seogjoo J. Jang
- Subjects
- Exciton theory, Hamiltonian systems, Quantum theory, Nanoscience
- Abstract
Dynamics of Molecular Excitons provides a comprehensive, but concise description of major theories on the dynamics of molecular excitons, intended to serve as a self-contained resource on the topic. Designed to help those new to this area gain proficiency in this field, experts will also find the book useful in developing a deeper understanding of the subject. The starting point of the book is the standard microscopic definition of molecular Hamiltonians presented in commonly accepted modern quantum mechanical notations. Major assumptions and approximations involved in constructing Frenkel-type exciton Hamiltonians, which are well established, but are often hidden under arcane notations and approximations of old publications, are presented in detail. This will help quantum chemists understand the major assumptions involved in the definition of commonly used exciton models. Rate theories of exciton dynamics, such as Förster and Dexter theories and their modern generalizations, are presented in a unified and detailed manner. In addition, important aspects that are often neglected, such as local field effect and the role of fluctuating environments, are discussed. Various quantum dynamics methods allowing coherent dynamics of excitons are presented in a systematic manner in the context of quantum master equations or path integral formalisms. The author also provides a detailed theoretical explanation for the major spectroscopic techniques probing exciton dynamics, including modern two-dimensional electronic spectroscopy, with a critical assessment of the implications of these spectroscopic measurements. Finally, the book includes a brief overview of major applications including an explanation of organic photovoltaic materials and natural light harvesting complexes. - Covers major theories of exciton dynamics in a consciously concise and easily readable way - Bridges the gap between quantum dynamics working with phenomenological exciton Hamiltonian and quantum chemistry construct reliable models amenable for dynamics calculations from ab initio calculations - Explores modern nonlinear electronic spectroscopy techniques to probe exciton dynamics, showing how it is applied
- Published
- 2020
4. Macro-ion Characterization
- Author
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KENNETH S. SCHMITZ, J. Reščič, V. Vlachy, D. Bratko, K. A. Dawson, M. Daoud, Mark J. Stevens, Kurt Kremer, John L. Anderson, Yuri Solomentsev, Theo Odijk, Narinder Singh, Yueying Y. Gao, Sun-Yi Huang, M. M. Fisher, Ellen M. Meyer, Stephen R. Vasconcellos, C. S. Patrickios, S. D. Gadam, S. M. Cramer, W. R. Hertler, T. A. Hatton, Ulrich P. Strauss, Vincent S. Zdanowicz, Yuanzhen Zhong, D. Hunkeler, X. Y. Wu, A. E. Hamielec, R. H. Pelton, D. R. Woods, Amer H. Shaaban, Kerrie Behilo, Paul Ander, Victor A. Bloomfield, Chenglie Ma, Patricia G. Arscott, H. Dautzenberg, G. Rother, J. Hartmann, Jiulin Xia, Paul L. Dubin, Lasker S. Ahmed, Etsuo Kokufuta, Y. Morishima, M. Seki, S. Nomura, M. Kamachi, C. J. Jang, Jože Škerjanc, Ksenija Kogej, W. Essafi, F. Lafuma, C. E. Williams, A. Moussaid, F. Schosseler, J. P. Munch, S. J. Candau, Wayne F. Reed, A. Malovikova, M. Milas, M. Rinaudo, R. Borsali, Eric J. Amis, Diane E. Valachovic, Marián Sedlák, Hideki Matsuoka, Dietmar Schwahn, Norio Ise, T. Okubo, M. Delsanti, J. P. Dalbiez, O. Spalla, L. Belloni, M. Drifford, D. I. D, KENNETH S. SCHMITZ, J. Reščič, V. Vlachy, D. Bratko, K. A. Dawson, M. Daoud, Mark J. Stevens, Kurt Kremer, John L. Anderson, Yuri Solomentsev, Theo Odijk, Narinder Singh, Yueying Y. Gao, Sun-Yi Huang, M. M. Fisher, Ellen M. Meyer, Stephen R. Vasconcellos, C. S. Patrickios, S. D. Gadam, S. M. Cramer, W. R. Hertler, T. A. Hatton, Ulrich P. Strauss, Vincent S. Zdanowicz, Yuanzhen Zhong, D. Hunkeler, X. Y. Wu, A. E. Hamielec, R. H. Pelton, D. R. Woods, Amer H. Shaaban, Kerrie Behilo, Paul Ander, Victor A. Bloomfield, Chenglie Ma, Patricia G. Arscott, H. Dautzenberg, G. Rother, J. Hartmann, Jiulin Xia, Paul L. Dubin, Lasker S. Ahmed, Etsuo Kokufuta, Y. Morishima, M. Seki, S. Nomura, M. Kamachi, C. J. Jang, Jože Škerjanc, Ksenija Kogej, W. Essafi, F. Lafuma, C. E. Williams, A. Moussaid, F. Schosseler, J. P. Munch, S. J. Candau, Wayne F. Reed, A. Malovikova, M. Milas, M. Rinaudo, R. Borsali, Eric J. Amis, Diane E. Valachovic, Marián Sedlák, Hideki Matsuoka, Dietmar Schwahn, Norio Ise, T. Okubo, M. Delsanti, J. P. Dalbiez, O. Spalla, L. Belloni, M. Drifford, and D. I. D
- Subjects
- Polyelectrolytes--Congresses
- Published
- 1993
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