Diagrammatic expansion for positive density-response spectra: Application to the electron gas
A.-M. Uimonen, G. Stefanucci, Y. Pavlyukh, R. van Leeuwen

TL;DR
This paper develops a diagrammatic expansion method ensuring positive density-response spectra, extending previous work on self-energy, and applies it to the electron gas to include vertex corrections without losing spectral positivity.
Contribution
It introduces a diagrammatic approach using half-diagrams to guarantee positive spectra and extends the theory to dressed Green's functions, addressing longstanding issues with vertex corrections.
Findings
The method guarantees positive spectra for all frequencies and densities.
Application to the 3D electron gas confirms the positivity of the proposed approximation.
The approach successfully incorporates vertex corrections without spectral negativity.
Abstract
In a recent paper [Phys. Rev. B 90, 115134 (2014)] we put forward a diagrammatic expansion for the self-energy which guarantees the positivity of the spectral function. In this work we extend the theory to the density response function. We write the generic diagram for the density-response spectrum as the sum of partitions. In a partition the original diagram is evaluated using time-ordered Green's functions (GF) on the left-half of the diagram, antitime-ordered GF on the right-half of the diagram and lesser or greater GF gluing the two halves. As there exist more than one way to cut a diagram in two halves, to every diagram corresponds more than one partition. We recognize that the most convenient diagrammatic objects for constructing a theory of positive spectra are the half-diagrams. Diagrammatic approximations obtained by summing the squares of half-diagrams do indeed correspond to…
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