We propose a novel many-body truncation for Gorkov self-consistent Green’s function (SCGF) theory where pairing correlations are handled at first order, while dynamical correlations are described using the particlenumber- conserving Dyson-SCGF scheme up to third order in the algebraic diagrammatic construction. The new method is enabled by the introduction of a scheme that allows us to approximate the Gorkov propagator in terms of a particle-number-conserving optimized reference state. The approach provides state-of-the-art predictions of the equation of state and spectral properties of infinite nuclear matter at zero temperature and in the presence of pairing. We find satisfactory results using modern saturating Hamiltonians at next-to-next-to-leading order in chiral effective field theory.

Gorkov algebraic diagrammatic construction for infinite nuclear matter / F. Marino, C.B.. - In: PHYSICAL REVIEW C. - ISSN 2469-9985. - 113:6(2026 Jun 01), pp. 064301.1-064301.26. [10.1103/r4j1-ggmr]

Gorkov algebraic diagrammatic construction for infinite nuclear matter

F. Marino
Primo
;
C. Barbieri
Secondo
;
G. Colò
Ultimo
2026

Abstract

We propose a novel many-body truncation for Gorkov self-consistent Green’s function (SCGF) theory where pairing correlations are handled at first order, while dynamical correlations are described using the particlenumber- conserving Dyson-SCGF scheme up to third order in the algebraic diagrammatic construction. The new method is enabled by the introduction of a scheme that allows us to approximate the Gorkov propagator in terms of a particle-number-conserving optimized reference state. The approach provides state-of-the-art predictions of the equation of state and spectral properties of infinite nuclear matter at zero temperature and in the presence of pairing. We find satisfactory results using modern saturating Hamiltonians at next-to-next-to-leading order in chiral effective field theory.
Settore PHYS-02/A - Fisica teorica delle interazioni fondamentali, modelli, metodi matematici e applicazioni
   Precision Physics, Fundamental Interactions and Structure of Matter (PRISMA+)
   Deutsche Forschungsgemeinschaft
   Exzellenzcluster (ExStra)
   390831469
1-giu-2026
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/1265355
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