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Analytical Expressions for T

By making a short-time approximation with respect to the first delay period r, it is possible to obtain approximate analytical expressions for t T), which turn out to be very accurate for times longer than the bath correlation... [Pg.168]

By exploiting the diffusional form of Eq. (5.18), which allows an analytical expression for numerical algorithm based on a continued fraction expansion (Grosso and Pastori Parravicini, Chapter III), we can compute the correlation function ( c(/)a (0))o. Here ( >o means an average over the equilibrium realizations accounted by a ix). In this case the assumption we made to get rid of the inhomogeneous term of Eq. (3.5) should now read ... [Pg.66]

Remember that the algorithm given above includes the assumption that an analytical expression for T] C, T) is easily available. If this is not so, matters would be considerably more complex. How would the modeling and computational procedure be altered in this event As usual, I have the last word. [Pg.559]


See other pages where Analytical Expressions for T is mentioned: [Pg.471]    [Pg.163]   


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