Nonlinear Optical Materials: Theory and Modeling

Nonlinear Optical Materials: Theory and Modeling

ISBN-10:
0841234019
ISBN-13:
9780841234017
Pub. Date:
02/28/1998
Publisher:
American Chemical Society
ISBN-10:
0841234019
ISBN-13:
9780841234017
Pub. Date:
02/28/1998
Publisher:
American Chemical Society
Nonlinear Optical Materials: Theory and Modeling

Nonlinear Optical Materials: Theory and Modeling

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Overview

Provides an overview of the theoretical aspects of nonlinear optical materials design. Examines the quantum mechanical theory of nonlinear optical phenomena. Discusses first principles and both semi-empirical and model Hamiltonian calculations of linear optical properties. Examines theoretical modeling of organic and polymeric nonlinear optical materials.


Product Details

ISBN-13: 9780841234017
Publisher: American Chemical Society
Publication date: 02/28/1998
Series: ACS Symposium Series , #628
Pages: 264
Product dimensions: 6.00(w) x 9.00(h) x 0.90(d)

Table of Contents

Nonlinear Optical Materials: Theory and Modeling, S.P. Karna and A.T. Yeates
Can Quantum Chemistry Provide Reliable Molecular Hyperpolarizabilities?, R.J. Bartlett and H. Sekino
Calculation of Nonlinear Optical Properties of Conjugated Polymers, B. Kirtman
Sum-Over-State Representation of Nonlinear Response Properties in Time-Dependent Hartree-Fock Theory: The Role of State Truncation, H. Sekino and R.J. Bartlett
Early Theoretical Studies of Third-Order Nonlinear Electric Susceptibilities, H. F. Hameka
Effect of Higher Excited Configurations on the Linear and Nonlinear Optical Properties of Organic Molecules, I.D.L. Albert, T.J. Marks, and M.A. Ratner
Frequency-Dependent Polarizabilities and Hyperpolarizabilities of Polyenes, P. Korambath and H.A. Kurtz
Optical Properties from Density-Functional Theory, M.E. Casida, C. Jamorski, F. Bohr, J. Guan, and D.R. Salahub
A Combined Hartree-Fock and Local-Density-Functional Method To Calculate Linear and Nonlinear Optical Properties of Molecules, B.I. Dunlap and S.P. Karna
Theory of Nonlinear Optical Properties of Quasi-1D Periodic Polymers, J.J. Ladik
Model Hamiltonians for Nonlinear Optical Properties of Conjugated Polymers, Z.G. Soos, D. Mukhopadhyay, and S. Ramasesha
Semiempirical Quantum Cell Models for the Third-Order Nonlinear Optical Response of Conjugated Polymers, D. Yaron
Multiphoton Resonant Nonlinear Optical Processes in Organic Molecules, P.N. Prasad and G.S. He

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