Many-Body Methods in Quantum Chemistry [E-Book] : Proceedings of the Symposium, Tel Aviv University 28 – 30 August 1988 / edited by U. Kaldor.
The present volume contains the text of the invited lectures presented at the Symposium on Many Body Methods in Quantum Chemistry, held on the campus of Tel Aviv University in August 1988. The Symposium was a satellite meeting of the Sixth International Congress on Quantum Chemistry held in Jerusal...
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Full text |
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Personal Name(s): | Kaldor, U., editor |
Imprint: |
Berlin, Heidelberg :
Springer,
1989
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Physical Description: |
V, 349 p. online resource. |
Note: |
englisch |
ISBN: |
9783642934247 |
DOI: |
10.1007/978-3-642-93424-7 |
Series Title: |
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Lecture Notes in Chemistry ;
52 |
Subject (LOC): |
- Perturbation-Theory Methods
- Tests and Applications of Complete Model Space Quasidegenerate Many-Body Perturbation Theory for Molecules
- Diagrammatic Approach to the Calculation of the Lower Bounds Using Optimized Inner Projection Technique. Application to the Cyclic Polyene Model
- Multi-Reference-State Rayleigh-Schrödinger Perturbation Theory
- Many-Body Theory of Van der Waals Interactions
- Partitioning of the Vibrational-Electronic Hamiltonian. Ab Initio Correlated Calculations of the First Vibronic Transitions for Some Simple Molecules.
- Coupled Cluster Methods
- Some Consideration of Alternative Ansätze in Coupled-Cluster Theory
- Spin-Adapted Multi-Reference Coupled Cluster Formalism Including Non-Linear Terms and its Application to the H4 Model System
- On the Construction of Size-Extensive Effective Hamiltonians for Time-Independent and Time-Dependent Quasi-Degenerate Systems
- Atomic and Molecular Applications of the Multireference Coupled-Cluster Method
- Quadratic Configuration Interaction
- Quadratic Configuration Interaction Method: Recent Applications and Comparison with Other Correlation Techniques
- Propagator Methods
- On the Connection between Effective Hamiltonians and Propagators
- An Effective Liouvillean Formalism for Propagators in Fock Space: Connection with Effective Hamiltonian Approach for Energy Differences
- Development of Multiconfigurational Green’s Function Approaches
- Relativistic Many-Body Theory
- A Relativistic Coupled-Cluster Approach with Radiative Corrections
- On the Relativistic Many-Body Perturbation Theory of Atomic and Molecular Electronic Structure
- List of Participants.