2008Physical Review BOpen access

Density-density functionals and effective potentials in many-body electronic structure calculations

Fernando A. Reboredo, Paul R. C. Kent

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Abstract

We demonstrate the existence of different density-density functionals designed to retain selected properties of the many-body ground state in a noninteracting solution starting from the standard density functional theory ground state. We focus on diffusion quantum Monte Carlo applications that require trial wave functions with optimal Fermion nodes. The theory is extensible and can be used to understand current practices in several electronic structure methods within a generalized density functional framework. The theory justifies and stimulates the search of optimal empirical density functionals and effective potentials for accurate calculations of the properties of real materials, but also cautions on the limits of their applicability. The concepts are tested and validated with a near-analytic model.

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We demonstrate the existence of different density-density functionals designed to retain selected properties of the many-body ground state in a noninteracting solution starting from the standard density functional theory ground state. We focus on diffusion quantum Monte Carlo applications that require trial wave functions with optimal Fermion nodes. The theory is extensible and can be used to understand current practices in several electronic structure methods within a generalized density functional framework. The theory justifies and stimulates the search of optimal empirical density functionals and effective potentials for accurate calculations of the properties of real materials, but also cautions on the limits of their applicability. The concepts are tested and validated with a near-analytic model.

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Available abstract

We demonstrate the existence of different density-density functionals designed to retain selected properties of the many-body ground state in a noninteracting solution starting from the standard density functional theory ground state. We focus on diffusion quantum Monte Carlo applications that require trial wave functions with optimal Fermion nodes. The theory is extensible and can be used to understand current practices in several electronic structure methods within a generalized density functional framework. The theory justifies and stimulates the search of optimal empirical density functionals and effective potentials for accurate calculations of the properties of real materials, but also cautions on the limits of their applicability. The concepts are tested and validated with a near-analytic model.

Key concepts: Density functional theory, Statistical physics, Quantum Monte Carlo, Orbital-free density functional theory, Focus (optics), Electronic density, Electronic structure, Ground state

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