
TL;DR
This paper presents a modern, Hamiltonian-independent formalism for nuclear energy density functional (EDF) theory, emphasizing its mathematical consistency and multi-reference implementation without relying on traditional Hamiltonian-based assumptions.
Contribution
It introduces a generalized, mathematically rigorous formulation of the nuclear EDF method that extends beyond mean-field and Hamiltonian-based frameworks.
Findings
Multi-reference EDF can be formulated without a genuine Hamiltonian.
Symmetry restoration can be achieved within a pure EDF framework.
Mathematically consistent EDF formalism does not necessarily imply physical soundness.
Abstract
The present document focuses on the theoretical foundations of the nuclear energy density functional (EDF) method. As such, it does not aim at reviewing the status of the field, at covering all possible ramifications of the approach or at presenting recent achievements and applications. The objective is to provide a modern account of the nuclear EDF formalism that is at variance with traditional presentations that rely, at one point or another, on a {\it Hamiltonian-based} picture. The latter is not general enough to encompass what the nuclear EDF method represents as of today. Specifically, the traditional Hamiltonian-based picture does not allow one to grasp the difficulties associated with the fact that currently available parametrizations of the energy kernel at play in the method do not derive from a genuine Hamilton operator, would the latter be effective. The method is…
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