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N. D. Orlova, L. A. Pozdnyakova, and E. B. Khodas, Opt. Spektrosk. 37, 602 (1974) [translated as Opt. Spectrosc. 37, 340 (1974)]; N. D. Orlova and L. A. Pozdnyakova, ibid. 48, 1086 (1980) [translated as Opt. Spectrosc. 48, 594 (1980)]; Y. Le. Duff and W. Holzer, Chem. Phys. Lett. 24, 212 (1974).
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N. D. Orlova, L. A. Pozdnyakova, and E. B. Khodas, Opt. Spektrosk. 37, 602 (1974) [translated as Opt. Spectrosc. 37, 340 (1974)]; N. D. Orlova and L. A. Pozdnyakova, ibid. 48, 1086 (1980) [translated as Opt. Spectrosc. 48, 594 (1980)]; Y. Le. Duff and W. Holzer, Chem. Phys. Lett. 24, 212 (1974).
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N. D. Orlova, L. A. Pozdnyakova, and E. B. Khodas, Opt. Spektrosk. 37, 602 (1974) [translated as Opt. Spectrosc. 37, 340 (1974)]; N. D. Orlova and L. A. Pozdnyakova, ibid. 48, 1086 (1980) [translated as Opt. Spectrosc. 48, 594 (1980)]; Y. Le. Duff and W. Holzer, Chem. Phys. Lett. 24, 212 (1974).
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Holzer, W.2
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64
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A similar nonadiabatic perspective on vibrational relaxation has been suggested by J. K. Rudra and M. F. Herman, J. Mol. Liq. 39, 233 (1988).
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J. Mol. Liq.
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Rudra, J.K.1
Herman, M.F.2
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65
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0343892536
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-
note
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l prescribed by the simple gas-phase expression, Eq. (3.2).
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-
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66
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0343456816
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note
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We do note that the m-level degeneracy is actually split by the instantaneous asymmetry of the solvent (Refs. 7-9). Exactly why our weak coupling approach (which takes into account the individual m states only in an average sense), should lead to results so similar to those of Ref. 8 - which looks specifically at the m-state splitting - is not entirely clear.
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-
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67
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0343021176
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note
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KM′(0)〉. See Ref. 7.
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68
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0343456815
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note
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ll′(|t-t′|). A systematic presentation of the entire development is given in J. Jang, Ph.D. thesis, Brown University, 2000.
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-
-
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69
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0003577072
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Princeton University Press, Princeton, Eqs. (3.7.8), (3.7.17), (4.6.3), and (5.4.1)
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A. R. Edmonds, Angular Momentum in Quantum Mechanics, 2nd ed. (Princeton University Press, Princeton, 1974). Eqs. (3.7.8), (3.7.17), (4.6.3), and (5.4.1).
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(1974)
Angular Momentum in Quantum Mechanics, 2nd Ed.
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Edmonds, A.R.1
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70
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0004161642
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Wiley-Interscience, New York, Equation (4.13) and the Appendix
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R. N. Zare, Angular Momentum (Wiley-Interscience, New York, 1988). Equation (4.13) and the Appendix.
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Angular Momentum
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Zare, R.N.1
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71
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B. J. Berne, J. Jortner, and R. Gordon, J. Chem. Phys. 47, 1600 (1967); J. Borysow, M. Moraldi, and L. Frommhold, Mol. Phys. 56, 913 (1985).
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B. J. Berne, J. Jortner, and R. Gordon, J. Chem. Phys. 47, 1600 (1967); J. Borysow, M. Moraldi, and L. Frommhold, Mol. Phys. 56, 913 (1985).
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Borysow, J.1
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Frommhold, L.3
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74
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0343456805
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note
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ll′ is negative for l→l+2 spectral transitions we study.
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79
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0343021163
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note
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The use of this reference system is, in fact, precisely what is required by the bath average in Eq. (2.19). However, we showed in Ref. 29 that it also provides a numerically accurate way to compute the full friction.
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81
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0003527976
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Harper and Row, New York, Secs. 6.4 and 6.5
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D. A. McQuarrie, Statistical Mechanics (Harper and Row, New York, 1976), Secs. 6.4 and 6.5.
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0004161838
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Cambridge University Press, Cambridge, Chap. 12
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W. H. Press, S. A. Teukolsky, W. T. Vetterling, and B. P. Flannery, Numerical Recipes in Fortran, 2nd ed. (Cambridge University Press, Cambridge, 1992), Chap. 12.
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Press, W.H.1
Teukolsky, S.A.2
Vetterling, W.T.3
Flannery, B.P.4
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83
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0343021160
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note
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In the context of this paper, "the absence of inelastic processes" means that there are no solvent-induced changes in the total angular momentum quantum number l.
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86
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0000456245
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R. E. Larsen, E. F. David, G. Goodyear, and R. M. Stratt, J. Chem. Phys. 107, 524 (1997).
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Larsen, R.E.1
David, E.F.2
Goodyear, G.3
Stratt, R.M.4
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88
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0033534227
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unpublished
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R. E. Larsen and R. M. Stratt, J. Chem. Phys. 110, 1036 (1999); B. M. Ladanyi and R. M. Stratt (unpublished).
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Ladanyi, B.M.1
Stratt, R.M.2
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89
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0001140409
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However, generalizations of INM theory have been suggested that may not turn out to be as limited. T. Keyes, J. Chem. Phys. 104, 9349 (1996).
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Keyes, T.1
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90
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0001289313
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in Ref. 46
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J. Borysow et al. (in Ref. 46); S. A. Egorov, K. F. Everitt, and J. L. Skinner, J. Phys. Chem. A 103, 9494 (1999).
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Borysow, J.1
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