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Single-reference coupled-cluster theory is an accurate and affordable computational method for the nuclear many-body problem.
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2007
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M. Horoi, J. R. Gour, M. Włoch, M. D. Lodriguito, B. A. Brown, and P. Piecuch, “Coupled-cluster and configuration-interaction calculations for heavy nuclei,” Phys. Rev. Lett. 98
2007
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B. S. Hu, F. R. Xu, Z. H. Sun, J. P. Vary, and T. Li, “Ab initio nuclear many-body perturbation calculations in the hartree-fock basis,” Phys. Rev. C 94
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S. Goriely, N. Chamel, and J. M. Pearson, “Skyrme-hartree-fock-bogoliubov nuclear mass formulas: Crossing the 0.6 mev accuracy threshold with microscopically deduced pairing,” Phys. Rev. Lett. 102
2009
Cited alongside, same era.
E. Epelbaum, H.-W. Hammer, and Ulf-G. Meißner, “Modern theory of nuclear forces,” Rev. Mod. Phys. 81
2009
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I. Shavitt and R. J. Bartlett, Many-body Methods in Chemistry and Physics (Cambridge University Press, Cambridge UK, 2009)
2009
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M. R. Schindler and D. R. Phillips, “Bayesian methods for parameter estimation in effective field theories,” Ann. Phys. 324
2009
Cited alongside, same era.
G. Hagen, T. Papenbrock, and D. J. Dean, “Solution of the center-of-mass problem in nuclear structure calculations,” Phys. Rev. Lett. 103
2009
Cited alongside, same era.
A. Staszczak, M. Stoitsov, A. Baran, and W. Nazarewicz, “Augmented Lagrangian method for constrained nuclear density functional theory,” Eur. Phys. J. A 46
2010
Cited alongside, same era.
G. Hagen, T. Papenbrock, D. J. Dean, and M. Hjorth-Jensen, “ Ab initio
2010
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K. Tsukiyama, S. K. Bogner, and A. Schwenk, “In-Medium Similarity Renormalization Group For Nuclei,” Phys. Rev. Lett. 106
2011
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2016
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K. Fossez, J. Rotureau, N. Michel, Quan Liu, and W. Nazarewicz, “Single-particle and collective motion in unbound deformed Mg 39 {}^{39}\mathrm{Mg} ,” Phys. Rev. C 94
2016
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B. Pritychenko, M. Birch, B. Singh, and M. Horoi, “Tables of e 2 e2 transition probabilities from the first 2 + 2^{+} states in even–even nuclei,” At. Data Nucl. Data Tables 107
2016
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S. R. Stroberg, A. Calci, H. Hergert, J. D. Holt, S. K. Bogner, R. Roth, and A. Schwenk, “Nucleus-dependent valence-space approach to nuclear structure,” Phys. Rev. Lett. 118
2017
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Q. B. Chen, N. Kaiser, Ulf-G. Meißner, and J. Meng, “Effective field theory for triaxially deformed nuclei,” Eur. Phys. J. A 53
2017
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Yiheng Qiu, Thomas M. Henderson, Jinmo Zhao, and Gustavo E. Scuseria, “Projected coupled cluster theory,” J. Chem. Phys. 147
2017
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T. Duguet and A. Signoracci, “Symmetry broken and restored coupled-cluster theory. II. Global gauge symmetry and particle number,” J. Phys. G 44
2017
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T. Duguet, V. Somà, S. Lecluse, C. Barbieri, and P. Navrátil, “Ab initio calculation of the potential bubble nucleus Si 34 {}^{34}\mathrm{Si} ,” Phys. Rev. C 95
2017
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N. M. Parzuchowski, S. R. Stroberg, P. Navrátil, H. Hergert, and S. K. Bogner, “Ab initio electromagnetic observables with the in-medium similarity renormalization group,” Phys. Rev. C 96
2017
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Naofumi Tsunoda, Takaharu Otsuka, Noritaka Shimizu, Morten Hjorth-Jensen, Kazuo Takayanagi, and Toshio Suzuki, “Exotic neutron-rich medium-mass nuclei with realistic nuclear forces,” Phys. Rev. C 95
2017
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T. D. Morris, J. Simonis, S. R. Stroberg, C. Stumpf, G. Hagen, J. D. Holt, G. R. Jansen, T. Papenbrock, R. Roth, and A. Schwenk, “Structure of the lightest tin isotopes,” Phys. Rev. Lett. 120
2018
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Yiheng Qiu, Thomas M. Henderson, Jinmo Zhao, and Gustavo E. Scuseria, “Projected coupled cluster theory: Optimization of cluster amplitudes in the presence of symmetry projection,” J. Chem. Phys. 149
2018
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Takashi Tsuchimochi and Seiichiro L. Ten-no, “Orbital-invariant spin-extended approximate coupled-cluster for multi-reference systems,” J. Chem. Phys. 149
2018
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Julien Ripoche, Thomas Duguet, Jean-Paul Ebran, and Denis Lacroix, “Combining symmetry breaking and restoration with configuration interaction: extension to z-signature symmetry in the case of the Lipkin Model,” Phys. Rev. C 97
2018
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S. R. Stroberg, H. Hergert, S. K. Bogner, and J. D. Holt, “Nonempirical Interactions for the Nuclear Shell Model: An Update,” Annu. Rev. Nucl. Part. Sci. 69
2019
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Shihang Shen, Haozhao Liang, Wen Hui Long, Jie Meng, and Peter Ring, “Towards an ab initio covariant density functional theory for nuclear structure,” Prog. Part. Nucl. Phys. 109
2019
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Y. Qiu, T. M. Henderson, T. Duguet, and G. E. Scuseria, “Particle-number projected bogoliubov-coupled-cluster theory: Application to the pairing hamiltonian,” Phys. Rev. C 99
2019
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G. F. Bertsch, T. Kawano, and L. M. Robledo, “Angular momentum of fission fragments,” Phys. Rev. C 99
2019
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A. Tichai, J. Müller, K. Vobig, and R. Roth, “Natural orbitals for ab initio no-core shell model calculations,” Phys. Rev. C 99
2019
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H. L. Crawford, P. Fallon, A. O. Macchiavelli, P. Doornenbal, N. Aoi, F. Browne, C. M. Campbell, S. Chen, R. M. Clark, M. L. Cortés, M. Cromaz, E. Ideguchi, M. D. Jones, R. Kanungo, M. MacCormick, S. Momiyama, I. Murray, M. Niikura, S. Paschalis, M. Petri, H. Sakurai, M. Salathe, P. Schrock, D. Steppenbeck, S. Takeuchi, Y. K. Tanaka, R. Taniuchi, H. Wang, and K. Wimmer, “First spectroscopy of the near drip-line nucleus Mg 40 {}^{40}\mathrm{Mg} ,” Phys. Rev. Lett. 122
2019
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A. Tichai, R. Roth, and T. Duguet, “Many-body perturbation theories for finite nuclei,” Front. Phys. 8
2020
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S. J. Novario, G. Hagen, G. R. Jansen, and T. Papenbrock, “Charge radii of exotic neon and magnesium isotopes,” Phys. Rev. C 102
2020
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T. Dytrych, K. D. Launey, J. P. Draayer, D. J. Rowe, J. L. Wood, G. Rosensteel, C. Bahri, D. Langr, and R. B. Baker, “Physics of nuclei: Key role of an emergent symmetry,” Phys. Rev. Lett. 124
2020
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T. Papenbrock and H. A. Weidenmüller, “Effective field theory for deformed odd-mass nuclei,” Phys. Rev. C 102
2020
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Julien Ripoche, Alexander Tichai, and Thomas Duguet, “Normal-ordered k k -body approximation in particle-number-breaking theories,” Eur. Phys. J. A 56
2020
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M. Burrows, R. B. Baker, Ch. Elster, S. P. Weppner, K. D. Launey, P. Maris, and G. Popa, “Ab initio leading order effective potentials for elastic nucleon-nucleus scattering,” Phys. Rev. C 102
2020
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T. Miyagi, S. R. Stroberg, J. D. Holt, and N. Shimizu, “Ab initio multishell valence-space hamiltonians and the island of inversion,” Phys. Rev. C 102
2020
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V. Somà, C. Barbieri, T. Duguet, and P. Navrátil, “Moving away from singly-magic nuclei with Gorkov Green’s function theory,” Eur. Phys. J. A 57
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I. K. Alnamlah, E. A. Coello Pérez, and D. R. Phillips, “Effective field theory approach to rotational bands in odd-mass nuclei,” Phys. Rev. C 104
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Takahiro Mizusaki and Peter Schuck, “Symmetry projection to coupled-cluster singles plus doubles wave function through the monte carlo method,” Phys. Rev. C 104
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J. Hoppe, A. Tichai, M. Heinz, K. Hebeler, and A. Schwenk, “Natural orbitals for many-body expansion methods,” Phys. Rev. C 103
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Á. Koszorús, X. F. Yang, W. G. Jiang, S. J. Novario, S. W. Bai, J. Billowes, C. L. Binnersley, M. L. Bissell, T. E. Cocolios, B. S. Cooper, R. P. de Groote, A. Ekström, K. T. Flanagan, C. Forssén, S. Franchoo, R. F. Garcia Ruiz, F. P. Gustafsson, G. Hagen, G. R. Jansen, A. Kanellakopoulos, M. Kortelainen, W. Nazarewicz, G. Neyens, T. Papenbrock, P. G. Reinhard, C. M. Ricketts, B. K. Sahoo, A. R. Vernon, and S. G. Wilkins, “Charge radii of exotic potassium isotopes challenge nuclear theory and the magic character of N = 32,” Nature Physics 17
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2021
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