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A Many-Body Extension to Madelung Quantum Hydrodynamics

ORAL

Abstract

In this talk we derive a many-body quantum-hydrodynamic model from first principles in the spirit of Madelung. We obtain exact time-dependent 3-D fluid equations that satisfy wave function symmetry or anti-symmetry, then obtain simplified forms for the cases of single permanent and Slater determinant with orthonormal basis functions. We show that, neglecting correlations and assuming many degenerate plane-wave electrons in the uniform limit, electron dynamics are governed by basic Euler equations with a mean-field Hartree interaction, Thomas–Fermi pressure, and Dirac exchange potential.

Presenters

  • David Michta

    University of Rochester

Authors

  • David Michta

    University of Rochester

  • Frank R Graziani

    Lawrence Livermore Natl Lab

  • Gregory W Hammett

    Princeton Plasma Physics Laboratory, Princeton University

  • Petros Tzeferacos

    University of Rochester