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This review presents some of the challenges in constructing models of atomic nuclei starting from theoretical descriptions of the strong interaction between nucleons.
Ab initio limits of atomic nuclei
Holt JD, Stroberg SR, Schwenk A, Simonis J · 1905
Earlier work this paper cites.
Do we know how to count powers in pionless and pionful effective field theory?
Yang CJ · 1905
Earlier work this paper cites.
Novel chiral Hamiltonian and observables in light and medium-mass nuclei
Somà V, Navrátil P, Raimondi F, Barbieri C, Duguet T · 1907
Earlier work this paper cites.
Eigenvector Continuation as an Efficient and Accurate Emulator for Uncertainty Quantification
König S, Ekström A, Hebeler K, Lee D, Schwenk A · 1909
Earlier work this paper cites.
Global sensitivity analysis of bulk properties of an atomic nucleus
Ekström A, Hagen G · 1910
Earlier work this paper cites.
Bound states of 4he with local interactions
Tjon J · 1975
Earlier work this paper cites.
Phenomenological lagrangians
Weinberg S · 1979
Earlier work this paper cites.
Chiral perturbation theory to one loop
Gasser J, Leutwyler H · 1984
Earlier work this paper cites.
Empirical model-building and response surfaces
Box GE, Draper NR · 1987
Earlier work this paper cites.
Phase shift analysis of 0–30 mev pp scattering data
Bergervoet JR, van Campen PC, van der Sanden WA, de Swart JJ · 1988
Earlier work this paper cites.
The Meson Theory of Nuclear Forces and Nuclear Structure
Machleidt R · 1989
Earlier work this paper cites.
Nuclear forces from chiral lagrangians
Weinberg S · 1990
Earlier work this paper cites.
Chiral dynamics and heavy-fermion formalism in nuclei: exchange axial currents
Park TS, Min DP, Rho M · 1993
Earlier work this paper cites.
Partial-wave analysis of all nucleon-nucleon scattering data below 350 mev
Stoks VGJ, Klomp RAM, Rentmeester MCM, de Swart JJ · 1993
Earlier work this paper cites.
Few-nucleon forces from chiral Lagrangians
van Kolck U · 1994
Earlier work this paper cites.
Accurate nucleon-nucleon potential with charge-independence breaking
Wiringa RB, Stoks VGJ, Schiavilla R · 1995
Earlier work this paper cites.
Chiral lagrangian approach to exchange vector currents in nuclei
Park TS, Min DP, Rho M · 1996
Earlier work this paper cites.
How to renormalize the schrodinger equation
Lepage P · 1997
Earlier work this paper cites.
Effective field theory of nuclear forces
Kolck UV · 1999
Earlier work this paper cites.
Bayesian model averaging: A tutorial
Hoeting JA, Madigan D, Raftery AE, Volinsky CT · 1999
Earlier work this paper cites.
High-precision, charge-dependent Bonn nucleon-nucleon potential
Machleidt R · 2001
Earlier work this paper cites.
Effective field theories, reductionism and scientific explanation
Hartmann S · 2001
Earlier work this paper cites.
Benchmark test calculation of a four-nucleon bound state
Kamada H, Nogga A, Glöckle W, Hiyama E, Kamimura M, Varga K, et al · 2001
Earlier work this paper cites.
Effective field theory for few-nucleon systems
Bedaque PF, van Kolck U · 2002
Earlier work this paper cites.
Three-nucleon forces from chiral effective field theory
Epelbaum E, Nogga A, Glöckle W, Kamada H, Meißner UG, Witała H · 2002
Earlier work this paper cites.
Accurate charge-dependent nucleon-nucleon potential at fourth order of chiral perturbation theory
Entem DR, Machleidt R · 2003
Earlier work this paper cites.
Self-consistent green’s function method for nuclei and nuclear matter
Dickhoff WH, Barbieri C · 2004
Earlier work this paper cites.
Low-momentum interaction in few-nucleon systems
Nogga A, Bogner SK, Schwenk A · 2004
Earlier work this paper cites.
Renormalization of one-pion exchange and power counting
Nogga A, Timmermans RGE, Kolck Uv · 2005
Earlier work this paper cites.
Renormalization of the 𝑁𝑁 \mathit{NN} interaction with a chiral two-pion-exchange potential: Central phases and the deuteron
Pavón Valderrama M, Arriola ER · 2006
Earlier work this paper cites.
Dependence of nuclear binding on hadronic mass variation
Flambaum VV, Wiringa RB · 2007
Earlier work this paper cites.
Lattice simulations for few- and many-body systems
Lee D · 2008
Earlier work this paper cites.
Subleading contributions to the chiral three-nucleon force: Long-range terms
Bernard V, Epelbaum E, Krebs H, Meißner UG · 2008
Earlier work this paper cites.
Bayesian methods for parameter estimation in effective field theories
Schindler M, Phillips D · 2008
Earlier work this paper cites.
Modern theory of nuclear forces
Epelbaum E, Hammer HW, Meißner UG · 2009
Earlier work this paper cites.
Three-nucleon low-energy constants from the consistency of interactions and currents in chiral effective field theory
Gazit D, Quaglioni S, Navrátil P · 2009
Earlier work this paper cites.
From low-momentum interactions to nuclear structure
Bogner SK, Furnstahl RJ, Schwenk A · 2010
Earlier work this paper cites.
Effective theory for deformed nuclei
Papenbrock T · 2010
Earlier work this paper cites.
Dos and don’ts of reduced chi-squared (2010)
[Dataset] Andrae R, Schulze-Hartung T, Melchior P · 2010
Cited alongside, same era.
Chiral effective field theory and nuclear forces
Machleidt R, Entem DR · 2011
Cited alongside, same era.
Improved nuclear matter calculations from chiral low-momentum interactions
Hebeler K, Bogner SK, Furnstahl RJ, Nogga A, Schwenk A · 2011
Cited alongside, same era.
Subleading contributions to the chiral three-nucleon force. ii. short-range terms and relativistic corrections
Bernard V, Epelbaum E, Krebs H, Meißner UG · 2011
Cited alongside, same era.
Signatures of three-nucleon interactions in few-nucleon systems
Kalantar-Nayestanaki N, Epelbaum E, Messchendorp JG, Nogga A · 2011
Cited alongside, same era.
Meaningful characterisation of perturbative theoretical uncertainties
Cacciari M, Houdeau N · 2011
In-medium similarity renormalization group for closed and open-shell nuclei
Hergert H · 2016
Later among the works it cites.
Uncertainty analysis and order-by-order optimization of chiral nuclear interactions
Carlsson BD, Ekström A, Forssén C, Strömberg DF, Jansen GR, Lilja O, et al · 2016
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Uncertainty quantification for proton-proton fusion in chiral effective field theory
Acharya B, Carlsson B, Ekström A, Forssén C, Platter L · 2016
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Nuclear binding near a quantum phase transition
Elhatisari S, Li N, Rokash A, Alarcón JM, Du D, Klein N, et al · 2016
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Emergent properties of nuclei from ab initio coupled-cluster calculations
Hagen G, Hjorth-Jensen M, Jansen GR, Papenbrock T · 2016
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Nuclear matter properties from local chiral interactions with Δ \mathrm{\Delta} isobar intermediate states
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Cited alongside, same era.
Handbook of Markov Chain Monte Carlo
Brooks S, Gelman A, Jones G, Meng XL · 2011
Cited alongside, same era.
Ab initio no core shell model
Barrett BR, Navrátil P, Vary JP · 2012
Cited alongside, same era.
Renormalizing chiral nuclear forces: Triplet channels
Long B, Yang CJ · 2012
Cited alongside, same era.
Self-consistent Green’s functions formalism with three-body interactions
Carbone A, Cipollone A, Barbieri C, Rios A, Polls A · 2013
Cited alongside, same era.
On the renormalization of the one–pion exchange potential and the consistency of weinberg’s power counting
Epelbaum E, Meißner UG · 2013
Cited alongside, same era.
Viability of carbon-based life as a function of the light quark mass
Epelbaum E, Krebs H, Lähde TA, Lee D, Meißner UG · 2013
Cited alongside, same era.
Logoteta D, Bombaci I, Kievsky A · 2016
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Bayesian parameter estimation for effective field theories
Wesolowski S, Klco N, Furnstahl RJ, Phillips DR, liya AT · 2016
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Ab initio calculation of the potential bubble nucleus 34
Duguet T, Somà V, Lecluse S, Barbieri C, Navrátil P · 2017
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Saturation with chiral interactions and consequences for finite nuclei
Simonis J, Stroberg SR, Hebeler K, Holt JD, Schwenk A · 2017
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Nuclear axial current operators to fourth order in chiral effective field theory
Krebs H, Epelbaum E, Meißner UG · 2017
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Solving derivative-free nonlinear least squares problems with POUNDERS
Wild SM · 2017
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Quantifying statistical uncertainties in ab initio nuclear physics using lagrange multipliers
Carlsson BD · 2017
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Theory of Probability: A Critical Introductory Treatment
de Finetti B · 2017
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Bayesian truncation errors in chiral effective field theory: Nucleon-nucleon observables
Melendez JA, Wesolowski S, Furnstahl RJ · 2017
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Structure of the lightest tin isotopes
Morris TD, Simonis J, Stroberg SR, Stumpf C, Hagen G, Holt JD, et al · 2018
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A per-cent-level determination of the nucleon axial coupling from quantum chromodynamics
Chang CC, Nicholson AN, Rinaldi E, Berkowitz E, Garron N, Brantley DA, et al · 2018
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Two-nucleon s 0 1 {}^{1}s_{0} amplitude zero in chiral effective field theory
Sánchez MS, Yang CJ, Long B, van Kolck U · 2018
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How (not) to renormalize integral equations with singular potentials in effective field theory
Epelbaum E, Gasparyan AM, Gegelia J, Meißner UG · 2018
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Semilocal momentum-space regularized chiral two-nucleon potentials up to fifth order
Reinert P, Krebs H, Epelbaum E · 2018
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Effective-field-theory predictions of the muon-deuteron capture rate
Acharya B, Ekström A, Platter L · 2018
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The deuteron-radius puzzle is alive: A new analysis of nuclear structure uncertainties
Hernandez O, Ekström A, Dinur NN, Ji C, Bacca S, Barnea N · 2018
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Microscopic optical potentials for calcium isotopes
Rotureau J, Danielewicz P, Hagen G, Jansen GR, Nunes FM · 2018
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Δ \mathrm{\Delta} isobars and nuclear saturation
Ekström A, Hagen G, Morris TD, Papenbrock T, Schwartz PD · 2018
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Light-nuclei spectra from chiral dynamics
Piarulli M, Baroni A, Girlanda L, Kievsky A, Lovato A, Lusk E, et al · 2018
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Bayesian approach to model-based extrapolation of nuclear observables
Neufcourt L, Cao Y, Nazarewicz W, Viens F · 2018
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Eigenvector continuation with subspace learning
Frame D, He R, Ipsen I, Lee D, Lee D, Rrapaj E · 2018
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Essential elements for nuclear binding
Lu BN, Li N, Elhatisari S, Lee D, Epelbaum E, Meißner UG · 2019
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78Ni revealed as a doubly magic stronghold against nuclear deformation
Taniuchi R, Santamaria C, Doornenbal P, Obertelli A, Yoneda K, Authelet G, et al · 2019
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Discrepancy between experimental and theoretical b-decay rates resolved from first principles
Gysbers P, Hagen G, Holt JD, Jansen GR, Morris TD, Navrátil P, et al · 2019
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How robust is the n = 34 n=34 subshell closure? first spectroscopy of Ar 52 {}^{52}\mathrm{Ar}
Liu HN, Obertelli A, Doornenbal P, Bertulani CA, Hagen G, Holt JD, et al · 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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Ab initio optical potentials and nucleon scattering on medium mass nuclei
Idini A, Barbieri C, Navrátil P · 2019
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Exploring bayesian parameter estimation for chiral effective field theory using nucleon–nucleon phase shifts
Wesolowski S, Furnstahl RJ, Melendez JA, Phillips DR · 2019
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Quantifying correlated truncation errors in effective field theory
Melendez JA, Furnstahl RJ, Phillips DR, Pratola MT, Wesolowski S · 2019
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Neutron drip line in the ca region from bayesian model averaging
Neufcourt L, Cao Y, Nazarewicz W, Olsen E, Viens F · 2019
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Bayesian optimization in ab initio nuclear physics
Ekström A, Forssén C, Dimitrakakis C, Dubhashi D, Johansson HT, Muhammad AS, et al · 2019
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Deep learning: Extrapolation tool for ab initio nuclear theory
Negoita GA, Vary JP, Luecke GR, Maris P, Shirokov AM, Shin IJ, et al · 2019
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Extrapolation of nuclear structure observables with artificial neural networks
Jiang WG, Hagen G, Papenbrock T · 2019
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