The theory of molecular quantum electrodynamics and its application to a number of intermolecular interactions
Considerable advances have taken place in quantum electrodynamical theory of intermolecular forces. Virtually impacting all areas of science, molecular quantum electrodynamics (MQED) has been successfully applied to numerous radiation-molecule and molecule-molecule processes. Molecular Quantum Electrodynamics delves in depth into the MQED theory of long-range intermolecular forces, offering a variety of physical viewpoints and calculational techniques.
The text provides an introduction and background on:
* Field theoretic treatments, including the second quantized Maxwell field formulation
* Intermolecular potential and a semi-classical perturbation theory treatment of short- and long-range forces
* Retarded dispersion interactions including discriminatory forces
* Intermolecular interactions in a radiation field
* Energy shift and transfer rate in relation to specific two- and many-body forces
Molecular Quantum Electrodynamics provides an essential resource for chemists, physicists, biophysicists, materials scientists, and nanochemists interested in exploring the theory and application of MQED.
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Akbar Salam, BSc, PhD, is an Associate Professor of Chemistry at Wake Forest University in Winston-Salem, North Carolina. He was previously the 21st Century Center of Excellence Guest Professor at Kyoto University, Japan, and a Visiting Fellow at the Institute for Theoretical Atomic, Molecular and Optical Physics at the Harvard-Smithsonian Center for Astrophysics in Cambridge, Massachusetts. He is a recipient of the University College London's Harry Poole Prize in Physical Chemistry and the Wiley International Journal of Quantum Chemistry Young Investigator Award. Currently, he is the Ollen R. Nalley Faculty Fellow at Wake Forest University.
The theory of molecular quantum electrodynamics and its application to a number of intermolecular interactions
Considerable advances have taken place in quantum electrodynamical theory of intermolecular forces. Virtually impacting all areas of science, molecular quantum electrodynamics (MQED) has been successfully applied to numerous radiation-molecule and molecule-molecule processes. Molecular Quantum Electrodynamics delves in depth into the MQED theory of long-range intermolecular forces, offering a variety of physical viewpoints and calculational techniques.
The text provides an introduction and background on:
Field theoretic treatments, including the second quantized Maxwell field formulation
Intermolecular potential and a semi-classical perturbation theory treatment of short- and long-range forces
Retarded dispersion interactions including discriminatory forces
Intermolecular interactions in a radiation field
Energy shift and transfer rate in relation to specific two- and many-body forces
Molecular Quantum Electrodynamics provides an essential resource for chemists, physicists, biophysicists, materials scientists, and nanochemists interested in exploring the theory and application of MQED.
The theory of molecular quantum electrodynamics and its application to a number of intermolecular interactions
Considerable advances have taken place in quantum electrodynamical theory of intermolecular forces. Virtually impacting all areas of science, molecular quantum electrodynamics (MQED) has been successfully applied to numerous radiation-molecule and molecule-molecule processes. Molecular Quantum Electrodynamics delves in depth into the MQED theory of long-range intermolecular forces, offering a variety of physical viewpoints and calculational techniques.
The text provides an introduction and background on:
* Field theoretic treatments, including the second quantized Maxwell field formulation
* Intermolecular potential and a semi-classical perturbation theory treatment of short- and long-range forces
* Retarded dispersion interactions including discriminatory forces
* Intermolecular interactions in a radiation field
* Energy shift and transfer rate in relation to specific two- and many-body forces
Molecular Quantum Electrodynamics provides an essential resource for chemists, physicists, biophysicists, materials scientists, and nanochemists interested in exploring the theory and application of MQED.
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