Coupled-cluster computations of atomic nuclei
arXiv:1312.7872 · doi:10.1088/0034-4885/77/9/096302
Abstract
In the past decade, coupled-cluster theory has seen a renaissance in nuclear physics, with computations of neutron-rich and medium-mass nuclei. The method is efficient for nuclei with product-state references, and it describes many aspects of weakly bound and unbound nuclei. This report reviews the technical and conceptual developments of this method in nuclear physics, and the results of coupled-cluster calculations for nucleonic matter, and for exotic isotopes of helium, oxygen, calcium, and some of their neighbors.
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Cited by in corpus (340)
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- Discrepancy between experimental and theoretical -decay rates resolved from first principles
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- A Guided Tour of Ab Initio Nuclear Many-Body Theory
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- Non-Empirical Interactions for the Nuclear Shell Model: An Update
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- Structure of the lightest tin isotopes
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- Nonperturbative shell-model interactions from the in-medium similarity renormalization group
- Nuclear forces and their impact on neutron-rich nuclei and neutron-rich matter
- Saturation with chiral interactions and consequences for finite nuclei
- Electric dipole polarizability of Ca and implications for the neutron skin
- 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
- Chiral Effective Field Theory and the High-Density Nuclear Equation of State
- Accurate bulk properties of nuclei from to from potentials with isobars
- Local chiral potentials and the structure of light nuclei
- Bayesian truncation errors in chiral effective field theory: nucleon-nucleon observables
- Neutron drip line in the Ca region from Bayesian model averaging
- A neutrinoless double beta decay master formula from effective field theory
- A Next-Generation Liquid Xenon Observatory for Dark Matter and Neutrino Physics
- Neutron matter from chiral two- and three-nucleon calculations up to NLO
- Uncertainty analysis and order-by-order optimization of chiral nuclear interactions
- The Magnus expansion and the in-medium similarity renormalization group
- Structure of Ni from first principles computations
- Three-Nucleon Forces: Implementation and Applications to Atomic Nuclei and Dense Matter
- Towards an ab initio covariant density functional for nuclear structure
- Radii and binding energies in oxygen isotopes: a puzzle for nuclear forces
- Ab Initio Multi-Reference In-Medium Similarity Renormalization Group Calculations of Even Calcium and Nickel Isotopes
- Symmetry restoration in mean-field approaches
- Converged ab initio calculations of heavy nuclei
- Global sensitivity analysis of bulk properties of an atomic nucleus
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- Theory of Nuclear Fission
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- Entanglement Rearrangement in Self-Consistent Nuclear Structure Calculations
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- The Neutron-Rich Edge of the Nuclear Landscape. Experiment and Theory
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- Chiral EFT based nuclear forces: Achievements and challenges
- Theoretical and Experimental Constraints for the Equation of State of Dense and Hot Matter
- Ab initio electromagnetic observables with the in-medium similarity renormalization group
- Self-consistent Green's function theory for atomic nuclei
- How Robust is the N = 34 Subshell Closure? First Spectroscopy of Ar
- Giant and pigmy dipole resonances in 4He, 16,22O, and 40Ca from chiral nucleon-nucleon interactions
- Complex Langevin and other approaches to the sign problem in quantum many-body physics
- In-Medium Similarity Renormalization Group for Closed and Open-Shell Nuclei
- Nuclear structure factors for general spin-independent WIMP-nucleus scattering
- Few- and many-nucleon systems with semilocal coordinate-space regularized chiral nucleon-nucleon forces
- Opportunities for Fundamental Physics Research with Radioactive Molecules
- Event Generators for High-Energy Physics Experiments
- Nuclear Charge Radii of the Nickel Isotopes Ni
- Infrared length scale and extrapolations for the no-core shell model
- Atomic nuclei from quantum Monte Carlo calculations with chiral EFT interactions
- From bound states to the continuum
- Variational calculation of the ground state of closed-shell nuclei up to
- Angular-momentum projection in coupled-cluster theory: structure of Mg
- Benchmark calculations of pure neutron matter with realistic nucleon-nucleon interactions
- Emergent properties of nuclei from ab initio coupled-cluster calculations
- In-medium similarity renormalization group with three-body operators
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- Nuclear matrix elements from lattice QCD for electroweak and beyond-Standard-Model processes
- What is ab initio in nuclear theory?
- Local nucleon-nucleon and three-nucleon interactions within chiral effective field theory
- Quantified Gamow Shell Model interaction for -shell nuclei
- Effects of three-nucleon forces and two-body currents on Gamow-Teller strengths
- Testing microscopically derived descriptions of nuclear collectivity: Coulomb excitation of 22Mg
- Quantum Monte Carlo Calculations of Light Nuclei Using Chiral Potentials
- Pion-less effective field theory for atomic nuclei and lattice nuclei
- Open -shell nuclei from first principles
- Electric dipole polarizability from first principles calculations
- Coherent elastic neutrino-nucleus scattering on 40Ar from first principles
- Natural orbitals for ab initio no-core shell model calculations
- Extrapolation of nuclear structure observables with artificial neural networks
- Electric and magnetic dipole modes in high-resolution inelastic proton scattering at
- Fully self-consistent relativistic Brueckner-Hartree-Fock theory for finite nuclei
- Improved many-body expansions from eigenvector continuation
- Optical potentials for the rare-isotope beam era
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- Regulator Artifacts in Uniform Matter for Chiral Interactions
- Wavefunction matching for solving quantum many-body problems
- Novel applications of the dispersive optical model
- Ab initio computation of the longitudinal response function in Ca
- Microscopic optical potentials for calcium isotopes
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- Computing the dipole polarizability of 48Ca with increased precision
- Evidence for Z=6 `magic number' in neutron-rich carbon isotopes
- Prediction of Nuclear Charge Density Distribution with Feedback Neural Network
- Effective density functionals beyond mean field
- Entanglement entropy of nuclear systems
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- Natural orbitals for many-body expansion methods
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- Effective field theory in the harmonic oscillator basis
- Ab Initio Derivation of Model Energy Density Functionals
- Continuum and Three-Nucleon Force Effects on 9Be Energy Levels
- Simulating excited states of the Lipkin model on a quantum computer
- Ab initio nuclear response functions for dark matter searches
- Variational approximations to exact solutions in shell-model valence spaces: calcium isotopes in the pf-shell
- Relativistic Brueckner-Hartree-Fock theory for neutron drops
- Ab initio calculations of low-energy nuclear scattering using confining potential traps
- Challenges in Nuclear Structure Theory
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- Equation of Motion Method to strongly correlated Fermi systems and Extended RPA approaches
- Can chiral EFT give us satisfaction?
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- Towards heavy-mass ab initio nuclear structure: Open-shell Ca, Ni and Sn isotopes from Bogoliubov coupled-cluster theory
- Towards the understanding of the genuine three-body interaction for ppp and pp
- Projection algorithm for state preparation on quantum computers
- In-Medium Similarity Renormalization Group Approach to the Nuclear Many-Body Problem
- Multiscale physics of atomic nuclei from first principles
- Dispersive formalism for the nuclear structure correction to the decay rate
- Comparing proton momentum distributions in and 3 nuclei via H H and He measurements
- Ab Initio Excited States from the In-Medium Similarity Renormalization Group
- Implementing chiral three-body forces in terms of medium-dependent two-body forces
- Emergence of clusters: Halos, Efimov states, and experimental signals
- Towards a self-consistent dynamical nuclear model
- Symmetry-projected variational calculations with the numerical suite TAURUS I. Variation after particle-number projection
- Ab-initio coupled-cluster calculations of ground and dipole excited states in 8He
- Improved structure of calcium isotopes from ab initio calculations
- Gamow Shell Model description of Li isotopes and their mirror partners
- Testing isospin symmetry breaking in ab initio nuclear theory
- Electric dipole polarizability of Ca
- Formation of Selfbound States in a One-Dimensional Nuclear Model -- A Renormalization Group based Density Functional Study
- Surprising charge-radius kink in the Sc isotopes at N=20
- Normal-ordered -body approximation in particle-number-breaking theories
- Neutrinoless double- decay of Sn, Te, and Xe in the Hamiltonian-based generator-coordinate method
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- Testing ab initio nuclear structure in neutron-rich nuclei: lifetime measurements of second 2+ states in 16C and 20O
- Pre-processing the nuclear many-body problem: Importance truncation versus tensor factorization techniques
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- Doubly magic nuclei from Lattice QCD forces at 469 MeV/c
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- Relativistic effects in ab-initio electron-nucleus scattering
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- Ca transverse response function from coupled-cluster theory
- Coulomb sum rule for He and O from coupled-cluster theory
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- IMSRG with flowing 3 body operators, and approximations thereof
- Massive neutron star with strangeness in a relativistic mean-field model with a high-density cut-off
- Nuclear Matrix Elements for Tests of Local Lorentz Invariance Violation
- High-Level Coupled-Cluster Energetics by Monte Carlo Sampling and Moment Expansions: Further Details and Comparisons
- Properties of neutron star described by a relativistic model
- The relevance of pion-exchange contributions versus contact terms in the chiral effective field theory description of nucleon-nucleon scattering
- Electromagnetic observables of open-shell nuclei from coupled-cluster theory
- Saturation of nuclear matter in the relativistic Brueckner Hatree-Fock approach with a leading order covariant chiral nuclear force
- Ground-state properties of light self-conjugate nuclei in no-core Monte Carlo shell model calculations with nonlocal interactions
- Constraining nuclear matter parameters from correlation systematics:a mean-field perspective
- Applications of reduced basis methods to the nuclear single particle spectrum
- Ab initio no-core shell model description of C isotopes
- Non-parametric Bayesian approach to extrapolation problems in configuration interaction methods
- The Dirac oscillator: an alternative basis for nuclear structure calculations
- Solving the nuclear pairing model with neural network quantum states
- Flow equations for cold Bose gases
- Applying the Density Matrix Expansion with Coordinate-Space Chiral Interactions
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- Benchmarking the variational reduced density matrix theory in the doubly-occupied configuration interaction space with integrable pairing models
- Effective shell-model interaction for nuclei southeast of Sn
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- Nuclear-matter saturation and symmetry energy within --full chiral effective field theory
- Properties of nuclear matter in relativistic Brueckner-Hartree-Fock model with high-precision charge-dependent potentials
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- Beta Decay in Medium-Mass Nuclei with the In-Medium Similarity Renormalization Group
- Ab initio computations from Ni towards Ca along neutron number
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- Benchmarking projected Hartree-Fock as an approximation
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- Electromagnetic properties of O for benchmarking nuclear Hamiltonians
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- Spectroscopic properties of 4He within a multiphonon approach
- Controlling extrapolations of nuclear properties with feature selection
- Merging ab initio theory and few-body approach for reactions
- Ground-state properties of doubly magic nuclei from the unitary-model-operator approach with the chiral two- and three-nucleon forces
- Electric dipole polarizability of Ni
- From the liquid drop model to lattice QCD
- Computational Nuclear Physics and Post Hartree-Fock Methods
- Importance truncation in non-perturbative many-body techniques
- Quantum Monte Carlo formalism for dynamical pions and nucleons
- Relativistic Normal Coupled-cluster Theory Analysis of Second- and Third-order Electric Polarizabilities of Zn I
- RCCPAC: A parallel relativistic coupled-cluster program for closed-shell and one-valence atoms and ions in FORTRAN
- Combining symmetry breaking and restoration with configuration interaction: extension to z-signature symmetry in the case of the Lipkin Model
- Coupled-cluster theory for strong entanglement in nuclei
- Ab initio calculations of anomalous seniority breaking in the shell for the isotones
- 16O electroweak response functions from first principles
- The radius of a typical-mass neutron star and chiral effective field theory
- Magnetic dipole transition in Ca
- Optimized nuclear energy density functionals including long-range pion contributions
- Converging High-Level Coupled-Cluster Energetics via Adaptive Selection of Excitation Manifolds Driven by Moment Expansions
- Mapping renormalized coupled cluster methods to quantum computers through a compact unitary representation of non-unitary operators
- Complete set of bound negative-parity states in the neutron-rich 18N nucleus
- Ab initio nuclear shape coexistence and emergence of island of inversion around
- Tensor optimized Fermi sphere method for nuclear matter -- power series correlated wave function and a cluster expansion
- The role of relativistic many-body theory in probing new physics beyond the standard model via the electric dipole moments of diamagnetic atoms
- Moving Beyond Chi-Squared in Nuclei and Neutron Stars
- Least-square approach for singular value decompositions of scattering problems
- "Best" iterative coupled-cluster triples model: More evidence for 3CC
- King-plot analysis of isotope shifts in simple diatomic molecules
- Nuclear Physics without High-Momentum Potentials: Constructing the Nuclear Effective Interaction Directly from Scattering Observables
- Uncertainties in ab initio nuclear structure calculations with chiral interactions
- Spectral function for He using the Chebyshev expansion in coupled-cluster theory
- Structure and dynamics of open-shell nuclei from spherical coupled-cluster theory
- How to renormalize coupled cluster theory
- Exact sum rules with approximate ground states
- Nuclear Schiff Moments and CP Violation
- Perspectives on few-body cluster structures in exotic nuclei
- Lattice methods and the nuclear few- and many-body problem
- Structure of odd-mass Ne, Na, and Mg nuclei
- Combined few-body and mean-field model for nuclei
- Ab initio computations of the fourth-order charge density moments of Ca and Pb
- Second-order optimisation strategies for neural network quantum states
- Introduction of the one-body correlation operator in the unitary-model-operator approach
- Spin-orbit coupling rule in bound fermions systems
- Guaranteed convergence for a class of coupled-cluster methods based on Arponen's extended theory
- Bayesian approach for many-body uncertainties in nuclear structure: Many-body perturbation theory for finite nuclei
- Electric dipole polarizability constraints on neutron skin and symmetry energy
- Global Framework for Emulation of Nuclear Calculations
- From spin to pseudospin symmetry: The origin of magic numbers in nuclear structure
- A Vision for the Science of Rare Isotopes
- Auxiliary Field Quantum Monte Carlo for Dilute Neutrons on the Lattice
- Importance truncation for the in-medium similarity renormalization group
- Electromagnetic reactions from coupled-cluster theory
- Local two- and three-nucleon chiral interactions
- Investigating nuclear beta decay using lattice quantum Monte Carlo approach
- Charge-dependent nucleon-nucleon interaction at NLO in nuclear lattice effective field theory
- Calculations for nuclear matter and finite nuclei within and beyond energy--density--functional theories through interactions guided by effective field theory
- Exactness of the normal-ordered two-body truncation of three-nucleon forces
- Connecting Relativistic Density Functional Theory to Microscopic Calculations
- Ground-state energies and charge radii of He, O, Ca, and Ni in the unitary-model-operator approach
- Computing nuclear response functions with time-dependent coupled-cluster theory
- Nambu-Covariant Many-Body Theory II: Self-Consistent Approximations
- A new single-particle basis for nuclear many-body calculations
- Low-energy dipole strength in 8He
- Effect of the repulsive core in the proton-neutron potential on deuteron elastic breakup cross sections
- Modewise Johnson-Lindenstrauss Embeddings for Nuclear Many-Body Theory
- On nuclear short-range correlations and the zero-energy eigenstates of the Schrodinger equation
- Relativistic and electron-correlation effects in static dipole polarizabilities for group 12 elements
- Effective field theories for collective excitations of atomic nuclei
- Neutron-rich nuclei and neutron skins from chiral low-resolution interactions
- Addition and removal energies of circular quantum dots
- NuLattice: Ab initio computations of atomic nuclei on lattices
- A study of open shell nuclei using chiral two-body interactions
- High-resolution (p,t) reaction measurements as spectroscopic tests of {\it ab-initio} theory in the mid -shell
- Toward scalable quantum computations of atomic nuclei
- Ab initio calculations of monopole sum rules: From finite nuclei to infinite nuclear matter
- Randomized Low-Rank Decompositions of Nuclear Three-Body Interactions
- Complex-scaled no-core shell model calculations of bound and unbound nuclear states in light nuclei
- Symmetry conserving Coupled Cluster Doubles wave function and the Self-Consistent odd particle number RPA
- Cutoff effects in Hartree-Fock calculations at leading order of chiral effective field theory
- The normal state of attractive Fermi gases from coupled-cluster theory
- Bridging reaction theory and nuclear structure in -Ca scattering
- Inclusive quasielastic (anti-)neutrino nucleus scattering within the Standard Model and beyond
- Optimized binning for response function reconstruction via Chebyshev expansions
- From closed shells to open shells: Coupled-cluster calculations of atomic nuclei
- Nuclear correlation functions using first-principle calculations of lattice quantum chromodynamics
- Singular Value Decomposition and Similarity Renormalization Group Evolution of Nuclear Interactions
- Relativistic Brueckner-Hartree-Fock Theory in Infinite Nuclear Matter
- Hartree-Fock emulators for nuclei: Application to charge radii of Ca
- Conformal prediction for uncertainties in nucleon-nucleon scattering
- Proton inelastic scattering reveals deformation in He
- Exploring quark mass dependent three-nucleon forces in medium-mass nuclei
- Computational schemes for the Magnus expansion of the in-medium similarity renormalization group
- Ab initio calculations of nuclear charge radii across and beyond Sn: Putting chiral EFT nuclear interactions to the test
- Many-body perturbation theory for strongly correlated effective Hamiltonians using effective field theory methods
- Universal trend of charge radii of even-even Ca-Zn nuclei
- Microscopic Theory of Nuclear Fission
- An overview of symmetric nuclear matter properties from chiral interactions up to fourth order of the chiral expansion
- Normal-ordering approximations and translational (non) invariance
- Electromagnetic sum rules for 22O from coupled-cluster theory
- Ab initio study in the island of inversion within the two-major-shell valence space
- A Data-Guided Coalescence Model for Light Nuclei and Hypernuclei Production in Relativistic Heavy-Ion Collisions at --200 GeV
- Bulk and spectroscopic nuclear properties within an ab initio renormalized random-phase approximation framework