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Selfconsistent diabatic approach to dissipative collective nuclear motion

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Zeitschrift für Physik A Atomic Nuclei

Abstract

Within a selfconsistent description for the one- and two-body density matrices collective variables are introduced via scaling diabatic states. Equations of collective motion coupled to a collision integral for the single-particle occupation probabilities are derived from the randomness of the two-body interaction matrix elements and from an additional time smoothing procedure. For a linear approximation to the time-dependence of the single-particle energies the collision term conserves energy all by itself, i.e. the time-smoothed time derivative of the correlation energy vanishes.

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Dedicated to Professor Friedrich Beck on the occasion of his 60th birthday

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Niita, K., Nörenberg, W. & Wang, S.J. Selfconsistent diabatic approach to dissipative collective nuclear motion. Z. Physik A - Atomic Nuclei 326, 69–77 (1987). https://doi.org/10.1007/BF01294573

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  • DOI: https://doi.org/10.1007/BF01294573

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