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Nuclear structure theory has recently gone through a major renewal with the development of ab initio techniques that can be applied to a large number of atomic nuclei, well beyond the light sector that had been traditionally targeted in the past.
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Self-consistent Green’s function method for nuclei and nuclear matter
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Effects of nuclear correlations on the O 16 ( e , e ′ p n ) {}^{16}\mathrm{O}(e,{e}^{{}^{\prime}}pn) reactions to discrete final states
Barbieri C, Giusti C, Pacati FD, Dickhoff WH · 2004
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Many-body theory exposed!
Dickhoff WH, Van Neck D · 2005
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On the treatment of the δ \delta -contributions in electromagnetic pp-knockout reactions
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Green’s Functions in Quantum Physics
Economou EN · 2006
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Diagrammatic calculation of thermodynamical quantities in nuclear matter
Somà V, Bożek P · 2006
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Entropy of a correlated system of nucleons
Rios A, Polls A, Ramos A, Müther H · 2006
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Barbieri C · 2006
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Nuclear force from lattice qcd
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Local three-nucleon interaction from chiral effective field theory
Navrátil P · 2007
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Liquid-gas phase transition in nuclear matter from realistic many-body approaches
Rios A, Polls A, Ramos A, Müther H · 2008
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In-medium T {T} -matrix for nuclear matter with three-body forces: Binding energy and single-particle properties
Somà V, Bożek P · 2008
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Detecting bubbles in exotic nuclei
Khan E, Grasso M, Margueron J, Van Giai N · 2008
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Modern Theory of Nuclear Forces
Epelbaum E, Hammer HW, Meißner UG · 2009
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Many-Body Methods in Chemistry and Physics
Shavitt I, Bartlett RJ · 2009
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Accurate nuclear radii and binding energies from a chiral interaction
Ekström A, Jansen GR, Wendt KA, Hagen G, Papenbrock T, Carlsson BD, et al · 2015
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Nuclear forces and their impact on neutron-rich nuclei and neutron-rich matter
Hebeler K, Holt J, Menéndez J, Schwenk A · 2015
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Long-Baseline Neutrino Facility (LBNF) and Deep Underground Neutrino Experiment (DUNE)
Acciarri R, et al · 2015
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Ab initio Bogoliubov coupled cluster theory for open-shell nuclei
Signoracci A, Duguet T, Hagen G, Jansen G · 2015
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Hartree-Fock many-body perturbation theory for nuclear ground-states
Tichai A, Langhammer J, Binder S, Roth R · 2016
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Quasiparticle and quasihole states of nuclei around Ni 56 {}^{56}\mathrm{Ni}
Barbieri C, Hjorth-Jensen M · 2009
Cited alongside, same era.
Role of long-range correlations in the quenching of spectroscopic factors
Barbieri C · 2009
Cited alongside, same era.
Solution of the center-of-mass problem in nuclear structure calculations
Hagen G, Papenbrock T, Dean DJ · 2009
Cited alongside, same era.
Thermodynamic properties of nuclear matter with three-body forces
Somà V, Bożek P · 2009
Cited alongside, same era.
Nuclear ’bubble’ structure in Si-34
Grasso M, Gaudefroy L, Khan E, Niksic T, Piekarewicz J, Sorlin O, et al · 2009
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From low-momentum interactions to nuclear structure
Bogner SK, Furnstahl RJ, Schwenk A · 2010
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Hergert H, Bogner S, Morris T, Schwenk A, Tsukiyama K · 2016
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Unified description of structure and reactions: implementing the nuclear field theory program
Broglia RA, Bortignon PF, Barranco F, Vigezzi E, Idini A, Potel G · 2016
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Radii and binding energies in oxygen isotopes: A challenge for nuclear forces
Lapoux V, Somà V, Barbieri C, Hergert H, Holt JD, Stroberg SR · 2016
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Structure of Ni 78 {}^{78}\mathrm{Ni} from first-principles computations
Hagen G, Jansen GR, Papenbrock T · 2016
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Ab initio calculation of the potential bubble nucleus Si 34 {}^{34}\mathrm{Si}
Duguet T, Somà V, Lecluse S, Barbieri C, Navrátil P · 2017
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Self-consistent Green’s function approaches
Barbieri C, Carbone A · 2017
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Symmetry broken and restored coupled-cluster theory: II. global gauge symmetry and particle number
Duguet T, Signoracci A · 2017
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Prospects for electron scattering on unstable, exotic nuclei
Suda T, Simon H · 2017
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First elastic electron scattering from Xe 132 {}^{132}\mathrm{Xe} at the scrit facility
Tsukada K, Enokizono A, Ohnishi T, Adachi K, Fujita T, Hara M, et al · 2017
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Electric dipole polarizability of Ca 48 {}^{48}\mathrm{Ca} and implications for the neutron skin
Birkhan J, Miorelli M, Bacca S, Bassauer S, Bertulani CA, Hagen G, et al · 2017
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Doubly magic nuclei from lattice QCD forces at M P S = M_{PS}= 469 MeV/c 2
McIlroy C, Barbieri C, Inoue T, Doi T, Hatsuda T · 2018
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Bogoliubov Many-Body Perturbation Theory for Open-Shell Nuclei
Tichai A, Arthuis P, Duguet T, Hergert H, Somà V, Roth R · 2018
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Algebraic diagrammatic construction formalism with three-body interactions
Raimondi F, Barbieri C · 2018
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Dawning of the N = 32 {N}=32 shell closure seen through precision mass measurements of neutron-rich titanium isotopes
Leistenschneider E, Reiter MP, Ayet San Andrés S, Kootte B, Holt JD, Navrátil P, et al · 2018
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Few-nucleon and many-nucleon systems with semilocal coordinate-space regularized chiral nucleon-nucleon forces
Binder S, Calci A, Epelbaum E, Furnstahl RJ, Golak J, Hebeler K, et al · 2018
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Recent Applications of Self-Consistent Green’s Function Theory to Nuclei
Barbieri C, Raimondi F, McIlroy C · 2018
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Inclusive electron-nucleus cross section within the self-consistent Green’s function approach
Rocco N, Barbieri C · 2018
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First measurement of the Ti ( e , e ′ ) x \mathrm{Ti}(e,{e}^{{}^{\prime}})x cross section at jefferson lab
Dai H, Murphy M, Pandey V, Abrams D, Nguyen D, Aljawrneh B, et al · 2018
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Effective interactions in the s d sd shell
Smirnova NA, Barrett BR, Kim Y, Shin IJ, Shirokov AM, Dikmen E, et al · 2019
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Ab initio optical potentials and nucleon scattering on medium mass nuclei
Idini A, Barbieri C, Navrátil P · 2019
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Lepton scattering from Ar 40 {}^{40}\mathrm{Ar} and Ti 48 {}^{48}\mathrm{Ti} in the quasielastic peak region
Barbieri C, Rocco N, Somà V · 2019
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Quasifree neutron knockout from Ca 54 {}^{54}\mathrm{Ca} corroborates arising N = 34 {N}=34 neutron magic number
Chen S, Lee J, Doornenbal P, Obertelli A, Barbieri C, Chazono Y, et al · 2019
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Chiral interactions up to next-to-next-to-next-to-leading order and nuclear saturation
Drischler C, Hebeler K, Schwenk A · 2019
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Family of Chiral Two- plus Three-Nucleon Interactions for Accurate Nuclear Structure Studies
Hüther T, Vobig K, Hebeler K, Machleidt R, Roth R · 2019
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Few- and many-nucleon systems with semilocal coordinate-space regularized chiral two- and three-body forces
Epelbaum E, Golak J, Hebeler K, Hüther T, Kamada H, Krebs H, et al · 2019
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Neutrino-nucleus cross section within the extended factorization scheme
Rocco N, Barbieri C, Benhar O, De Pace A, Lovato A · 2019
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First measurement of the Ar ( e , e ′ ) x \mathrm{Ar}(e,{e}^{{}^{\prime}})x cross section at jefferson laboratory
Dai H, Murphy M, Pandey V, Abrams D, Nguyen D, Aljawrneh B, et al · 2019
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Private communication
Raimondi F (2019) · 2019
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Private communication
Sun YL (2019) · 2019
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Nuclear effective field theory: status and perspectives
Hammer HW, König S, van Kolck U · 2020
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Atomic nuclei from quantum Monte Carlo calculations with chiral EFT interactions
Gandolfi S, Lonardoni D, Lovato A, Piarulli M · 2020
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Bogoliubov many-body perturbation theory under constraint
Demol P, Frosini M, Tichai A, Somà V, Duguet T · 2020
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Many-body perturbation theories for finite nuclei
Tichai A, Roth R, Duguet T · 2020
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Novel chiral hamiltonian and observables in light and medium-mass nuclei
Somà V, Navrátil P, Raimondi F, Barbieri C, Duguet T · 2020
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Ab initio computation of charge densities for Sn and Xe isotopes
Arthuis P, Barbieri C, Vorabbi M, Finelli P · 2020
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High-precision nuclear forces from chiral EFT: State-of-the-art, challenges and outlook
Epelbaum E, Krebs H, Reinert P · 2020
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Examining the N = 28 N=28 shell closure through high-precision mass measurements of Ar 46 – 48 {}^{46\text{--}48}\mathrm{Ar}
Mougeot M, Atanasov D, Barbieri C, Blaum K, Breitenfeld M, de Roubin A, et al · 2020
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Ab Initio Treatment of Collective Correlations and the Neutrinoless Double Beta Decay of 48
Yao JM, Bally B, Engel J, Wirth R, Rodríguez TR, Hergert H · 2020
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Normal-ordered k k -body approximation in particle-number-breaking theories
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Nucleon properties in the nuclear medium
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