Ab-initio self-consistent Gorkov-Green's function calculations of semi-magic nuclei - II. Numerical implementation at second order with a two-nucleon interaction
arXiv:1311.1989 · doi:10.1103/PhysRevC.89.024323
Abstract
The newly developed Gorkov-Green's function approach represents a promising path to the ab initio description of medium-mass open-shell nuclei. We discuss the implementation of the method at second order with a two-body interaction, with particular attention to the numerical solution of Gorkov's equation. Different sources of theoretical error and degrees of self-consistency are investigated. We show that Krylov projection techniques with a multi-pivot Lanczos algorithm efficiently handle the growth of poles in the one-body Green's function when Gorkov's equation is solved self-consistently. The end result is a tractable, accurate and gently scaling ab initio scheme applicable to full isotopic chains in the medium-mass region.
17 pages, 13 figures
References in corpus (9)
- Chiral effective field theory and nuclear forces
- Evolution of shell structure in neutron-rich calcium isotopes
- In-Medium Similarity Renormalization Group for Nuclei
- Self-consistent Green's functions formalism with three-body interactions
- Three-body forces and proton-rich nuclei
- Quasiparticle and quasihole states of nuclei around 56Ni
- Quasiparticles in Neon using the Faddeev Random Phase Approximation
- Single particle spectra based of modern effective interactions
- Summation of Parquet diagrams as an ab initio method in nuclear structure calculations
Cited by in corpus (61)
- The In-Medium Similarity Renormalization Group: A Novel Ab Initio Method for Nuclei
- A nucleus-dependent valence-space approach to nuclear structure
- A Guided Tour of Ab Initio Nuclear Many-Body Theory
- Leading chiral three-nucleon forces along isotope chains in the calcium region
- Novel chiral Hamiltonian and observables in light and medium-mass nuclei
- Ab Initio Treatment of Collective Correlations and the Neutrinoless Double Beta Decay of Ca
- Probing the N = 32 shell closure below the magic proton number Z = 20: Mass measurements of the exotic isotopes 52,53K
- The description of strong correlation within self-consistent Green's function second-order perturbation theory
- Quenching of single-particle strength from direct reactions with stable and rare-isotope beams
- Dawning of the N=32 shell closure seen through precision mass measurements of neutron-rich titanium isotopes
- Nuclear binding near a quantum phase transition
- Correlated density-dependent chiral forces for infinite matter calculations within the Green's function approach
- Entanglement Rearrangement in Self-Consistent Nuclear Structure Calculations
- Chiral three-nucleon forces and the evolution of correlations along the oxygen isotopic chain
- Prospective study on microscopic potential with Gogny interaction
- Ab initio electromagnetic observables with the in-medium similarity renormalization group
- Ab initio optical potentials and nucleon scattering on medium mass nuclei
- Self-consistent Green's function theory for atomic nuclei
- In-Medium Similarity Renormalization Group for Closed and Open-Shell Nuclei
- Ab initio calculation of the potential bubble nucleus Si
- Nuclear Charge Radii of the Nickel Isotopes Ni
- From bound states to the continuum
- Non-observable nature of the nuclear shell structure. Meaning, illustrations and consequences
- Neutrino-nucleus cross section within the extended factorization scheme
- Generator-coordinate reference states for spectra and decay in the in-medium similarity renormalization group
- Optical potentials for the rare-isotope beam era
- Microscopic positive-energy potential based on Gogny interaction
- Nuclear Forces for Precision Nuclear Physics -- a collection of perspectives
- Lepton scattering from Ar and Ti in the quasielastic peak region
- Nuclear electromagnetic dipole response with the Self-Consistent Green's Function formalism
- Algebraic diagrammatic construction formalism with three-body interactions
- Moving away from singly-magic nuclei with Gorkov Green's function theory
- Inclusive electron-nucleus cross section within the Self Consistent Green's Function approach
- Challenges in Nuclear Structure Theory
- Well funneled nuclear structure landscape: renormalization
- Pairing and short-range correlations in nuclear systems
- Ab Initio Excited States from the In-Medium Similarity Renormalization Group
- Formation of Selfbound States in a One-Dimensional Nuclear Model -- A Renormalization Group based Density Functional Study
- Doubly magic nuclei from Lattice QCD forces at 469 MeV/c
- Many-body correlations in nuclear superfluidity
- Gorkov algebraic diagrammatic construction formalism at third order
- Examining the = 28 shell closure through high-precision mass measurements of Ar
- Unified description of structure and reactions: implementing the Nuclear Field Theory program
- Nuclear Structure from the In-Medium Similarity Renormalization Group
- Anomalous propagators and the particle-particle channel: Hedin's equations
- Asymptotic characteristics of decay channels of light nuclei states in the ab initio approach
- Investigation of the ground-state spin inversion in the neutron-rich 47,49Cl isotopes
- Core-polarization effects and effective charges in O and Ni isotopes from chiral interactions
- Many-body Propagator Theory with Three-Body Interactions: a Path to Exotic Open Shell Isotopes
- A First Glimpse at the Shell Structure beyond Ca: Spectroscopy of K, Ca, and Ca
- Importance truncation in non-perturbative many-body techniques
- Many-body theory for quasiparticle states in superfluid fermionic systems
- Recent Applications of Self-Consistent Green's Function Theory to Nuclei
- Self-consistent Green's functions with three-body forces
- Detailed spectroscopy of Ca: A study of the decay of K
- From spin to pseudospin symmetry: The origin of magic numbers in nuclear structure
- On the calculation and use of effective single-particle energies. The example of the neutron - splitting along isotones
- Nambu-Covariant Many-Body Theory I: Perturbative Approximations
- Algebraic Gorkov solution in finite systems for the separable pairing interaction
- Scalable and predictive spectra of correlated molecules with moment truncated iterated perturbation theory
- Diagrammatic Monte Carlo for Finite Systems at Zero Temperature