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[4] N. Valley, L. Jensen, J. Autschbach, G. C. Schatz
Calculating the Raman and HyperRaman Spectra of Large Molecules and Molecules Interacting with Nanoparticles
in Reimers, J. (editor), Computational methods for large systems,Wiley, ISBN: 978-0-470-48788-4, 2011.

[3] P.Th. van Duijnen, M. Swart and L. Jensen
The Discrete Reaction Field approach for calculating solvent effects
in "Solvation Effects on Molecules and Biomolecules: Computational Methods and Applications"
Springer Series "Challenges and Advances in Computational Chemistry and Physics",
Vol. 6; 39102, Edited by S. Canuto, Springer, 2008

[2] L. Jensen, P. Th. van Duijnen
The Discrete Solvent Reaction Field model: A Quantum mechanics/Molecular mechanics model for calculating nonlinear optical properties of molecules in condensed phase
in ”Atoms, molecules and clusters in electric fields. Theoretical approaches to the calculation of electric polarizability”.
Edited by G. Maroulis, Imperial College Press, 2006, ISBN 1-86094-676-3

[1] R.-H. Xie, Q. Rao, L. Jensen
Nonlinear Optics of fullerenes and carbon nanotubes
in ”Encyclopedia of Nanoscience and Nanotechnology”,
Edited by H. S. Nalwa, American Scientific Publisher, Vol. 8, 67-99. 2004