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A discussion of the present outline for classifying the nonlinear spectroscopies is to be found in: Kirkwood, Jason C.; Ulness, Darin J.; Albrecht, A. C. J. Phys. Chem. A, 2000, 104, 4167-4173.
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Ph.D. thesis, University of Cambridge, Cambridge, UK
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Fischer, Peer Ph.D. thesis, University of Cambridge, Cambridge, UK, 1999.
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Fischer, P.1
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Fischer, P.; Wiersma, D. S.; Rhighini, R.; Champagne, B.; Buckingham, A. D.; Phys. Rev. Lett., 2000, 85, No. 20.
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Kulakov, T.; Belkin, M.; Yan, L.; Ernst, K.-H.; Shen, Y. R. Abstracts of papers of the American Chemical Society, 2000, Vol. 219, pp. 449-PHYS. See also Phys. Rev. Lett., 2000, 85, No. 21.
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Kulakov, T.1
Belkin, M.2
Yan, L.3
Ernst, K.-H.4
Shen, Y.R.5
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Kulakov, T.; Belkin, M.; Yan, L.; Ernst, K.-H.; Shen, Y. R. Abstracts of papers of the American Chemical Society, 2000, Vol. 219, pp. 449-PHYS. See also Phys. Rev. Lett., 2000, 85, No. 21.
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0041566534
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note
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The full presentation is to be appear in the literature. Among other things this more complete treatment will examine difference frequency generation (DFG) in addition to SFG.
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10
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0003893678
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John Wiley and Sons, Inc.: New York, NY
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IJK, and the double Feynman diagrams for the eight Liouville paths, in terms of the microscopic parameters (though not for a local Cartesian frame) are to be found in Shen, Y. R., The Principles of Nonlinear Optics; John Wiley and Sons, Inc.: New York, NY, 1984, pp 17-21.
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(1984)
The Principles of Nonlinear Optics
, pp. 17-21
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Shen, Y.R.1
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