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Local chiral effective field theory interactions have recently been developed and used in the context of quantum Monte Carlo few- and many-body methods for nuclear physics.
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A. Gezerlis, I. Tews, E. Epelbaum, M. Freunek, S. Gandolfi, K. Hebeler, A. Nogga, and A. Schwenk, “Local chiral effective field theory interactions and quantum Monte Carlo applications,” Phys. Rev. C 90
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2014
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2015
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2015
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M. Piarulli, L. Girlanda, R. Schiavilla, R. Navarro Pérez, J. E. Amaro, and E. Ruiz Arriola, “Minimally nonlocal nucleon-nucleon potentials with chiral two-pion exchange including Δ \Delta resonances,” Phys. Rev. C 91
2015
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2015
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2016
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H. Hergert, S. K. Bogner, T. D. Morris, A. Schwenk, and K. Tsukiyama, “The In-Medium Similarity Renormalization Group: A novel ab initio
2016
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I. Tews, S. Gandolfi, A. Gezerlis, and A. Schwenk, “Quantum Monte Carlo calculations of neutron matter with chiral three-body forces,” Phys. Rev. C 93
2016
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A. Dyhdalo, R. J. Furnstahl, K. Hebeler, and I. Tews, “Regulator artifacts in uniform matter for chiral interactions,” Phys. Rev. C 94
2016
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M. Piarulli, L. Girlanda, R. Schiavilla, A. Kievsky, A. Lovato, L. E. Marcucci, S. C. Pieper, M. Viviani, and R. B. Wiringa, “Local chiral potentials with Δ \mathrm{\Delta} -intermediate states and the structure of light nuclei,” Phys. Rev. C 94
2016
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J. E. Lynn, I. Tews, J. Carlson, S. Gandolfi, A. Gezerlis, K. E. Schmidt, and A. Schwenk, “Chiral Three-Nucleon Interactions in Light Nuclei, Neutron- α \mathit{\alpha} Scattering, and Neutron Matter,” Phys. Rev. Lett. 116
2016
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P. Klos, J. E. Lynn, I. Tews, S. Gandolfi, A. Gezerlis, H.-W. Hammer, M. Hoferichter, and A. Schwenk, “Quantum Monte Carlo calculations of two neutrons in finite volume,” Phys. Rev. C 94
2016
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S. Gandolfi, H.-W. Hammer, P. Klos, J. E. Lynn, and A. Schwenk, “Is a Trineutron Resonance Lower in Energy than a Tetraneutron Resonance?” Phys. Rev. Lett. 118
2017
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