An Introduction to Equation-of-Motion and Linear-Response Coupled-Cluster Methods for Electronically Excited States of Molecules
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Publisher
Springer Netherlands
Link
http://link.springer.com/content/pdf/10.1007/978-1-4020-8184-2_3
Reference73 articles.
1. Coester F (1958) Bound states of a many-particle system. Nucl Phys 7: 421–424.
2. Coester F, Kümmel H (1960) Short-range correlations in nuclear wave functions. Nucl Phys 17: 477–485.
3. ČíŽek J (1966) On the correlation problem in atomic and molecular systems: Calculation of wavefunction components in Ursell-type expansion using quantum-field theoretical methods. J Chem Phys 45: 4256–4266.
4. ČíŽek J (1969) On the use of the cluster expansion and the technique of diagrams in calculations of the correlation effects in atoms and molecules. Adv Chem Phys 14: 35–89.
5. ČíŽek J, Paldus J (1971) Correlation problems in atomic and molecular systems III: Rederivation of the coupled-pair many-electron theory using the traditional quantum chemical methods. Int J Quantum Chem 5: 359–379.
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