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Today there are a plethora of many-body techniques for calculating nuclear wave functions and matrix elements.
Shell model for the positive-parity states of 15
E. C. Halbert and J. B. French · 1957
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Shell-model applications in nuclear spectroscopy
P.J. Brussard and P.W.M. Glaudemans · 1977
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Computational methods for shell model calculations
R. R. Whitehead, A. Watt, B. J. Cole, and I. Morrison · 1977
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Computer code OXBASH: the Oxford University-Buenos Aires-MSU shell model code
B.A. Brown, A. Etchegoyen, and W.D.M. Rae · 1985
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Status of the nuclear shell model
B. A. Brown and B. H. Wildenthal · 1988
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Accurate nucleon-nucleon potential with charge-independence breaking
Robert B Wiringa, VGJ Stoks, and R Schiavilla · 1995
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Present status of shell model techniques
E. Caurier and F Nowacki · 1999
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Chaotic wave functions and exponential convergence of low-lying energy eigenvalues
Mihai Horoi, Alexander Volya, and Vladimir Zelevinsky · 1999
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Atomic parity nonconservation and nuclear anapole moments
WC Haxton and Carl E Wieman · 2001
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Accurate charge-dependent nucleon-nucleon potential at fourth order of chiral perturbation theory
D. R. Entem and R. Machleidt · 2003
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The shell model as a unified view of nuclear structure
E. Caurier, G. Martinez-Pinedo, F. Nowacki, A. Poves, and A. P. Zuker · 2005
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Neutrino-nucleus reactions based on new shell model hamiltonians
Toshio Suzuki, Satoshi Chiba, Takashi Yoshida, Toshitaka Kajino, and Takaharu Otsuka · 2006
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New “USD” hamiltonians for the 𝑠𝑑 \mathit{sd} shell
B. Alex Brown and W. A. Richter · 2006
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Accelerating configuration interaction calculations for nuclear structure
P. Sternberg, E. Ng, C. Yang, P. Maris, J.P. Vary, M. Sosonkina, and H. Viet Le · 2008
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Recent developments in no-core shell-model calculations
Petr Navrátil, Sofia Quaglioni, Ionel Stetcu, and Bruce R Barrett · 2009
Cited alongside, same era.
Ab initio coupled-cluster approach to nuclear structure with modern nucleon-nucleon interactions
G Hagen, T Papenbrock, David J Dean, and Morten Hjorth-Jensen · 2010
Cited alongside, same era.
Coulomb-sturmian basis for the nuclear many-body problem
M. A. Caprio, P. Maris, and J. P. Vary · 2012
Cited alongside, same era.
Convergence properties of ab initio calculations of light nuclei in a harmonic oscillator basis
S. A. Coon, M. I. Avetian, M. K. G. Kruse, U. van Kolck, P. Maris, and J. P. Vary · 2012
Cited alongside, same era.
Corrections to nuclear energies and radii in finite oscillator spaces
R. J. Furnstahl, G. Hagen, and T. Papenbrock · 2012
Cited alongside, same era.
Shell-model analysis of the Xe 136 {}^{136}\mathrm{Xe} double beta decay nuclear matrix elements
Ab initio effective interactions for s d sd -shell valence nucleons
E. Dikmen, A. F. Lisetskiy, B. R. Barrett, P. Maris, A. M. Shirokov, and J. P. Vary · 2015
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Infrared length scale and extrapolations for the no-core shell model
K. A. Wendt, C. Forssén, T. Papenbrock, and D. Sääf · 2015
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N3LO NN interaction adjusted to light nuclei in ab exitu approach
AM Shirokov, IJ Shin, Y Kim, M Sosonkina, P Maris, and JP Vary · 2016
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Regulator artifacts in uniform matter for chiral interactions
A. Dyhdalo, R. J. Furnstahl, K. Hebeler, and I. Tews · 2016
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Efficacy of the SU(3) scheme for ab initio large-scale calculations beyond the lightest nuclei
Tomás Dytrych, Pieter Maris, Kristina D Launey, Jerry P Draayer, James P Vary, Daniel Langr, Erik Saule, MA Caprio, U Catalyurek, and Masha Sosonkina · 2016
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M. Horoi and B. A. Brown · 2013
Cited alongside, same era.
Ab initio no core shell model
Bruce R Barrett, Petr Navrátil, and James P Vary · 2013
Cited alongside, same era.
Factorization in large-scale many-body calculations
Calvin W. Johnson, W. Erich Ormand, and Plamen G. Krastev · 2013
Cited alongside, same era.
Nuclear shell-model code for massive parallel computation, KSHELL
Noritaka Shimizu · 2013
Cited alongside, same era.
Collective modes in light nuclei from first principles
T. Dytrych, K. D. Launey, J. P. Draayer, P. Maris, J. P. Vary, E. Saule, U. Catalyurek, M. Sosonkina, D. Langr, and M. A. Caprio · 2013
Cited alongside, same era.
Universal properties of infrared oscillator basis extrapolations
S. N. More, A. Ekström, R. J. Furnstahl, G. Hagen, and T. Papenbrock · 2013
Cited alongside, same era.
Weakly interacting massive particle-nucleus elastic scattering response
Nikhil Anand, A. Liam Fitzpatrick, and W. C. Haxton · 2014
Cited alongside, same era.
S. R. Stroberg, A. Calci, H. Hergert, J. D. Holt, S. K. Bogner, R. Roth, and A. Schwenk · 2017
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Natural orbital description of the halo nucleus 6 he
Chrysovalantis Constantinou, Mark A Caprio, James P Vary, and Pieter Maris · 2017
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Ab initio no-core properties of li 7 and be 7 with the jisp16 and chiral nnlo opt interactions
Taihua Heng, James P Vary, and Pieter Maris · 2017
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Large-scale exact diagonalizations reveal low-momentum scales of nuclei
C. Forssén, B. D. Carlsson, H. T. Johansson, D. Sääf, A. Bansal, G. Hagen, and T. Papenbrock · 2018
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Accelerating nuclear configuration interaction calculations through a preconditioned block iterative eigensolver
Meiyue Shao, H Metin Aktulga, Chao Yang, Esmond G Ng, Pieter Maris, and James P Vary · 2018
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Bigstick: A flexible configuration-interaction shell-model code
Calvin W Johnson, W Erich Ormand, Kenneth S McElvain, and Hongzhang Shan · 2018
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Symplectic no-core configuration interaction framework for ab initio nuclear structure
Anna E McCoy, Mark A Caprio, and Tomas Dytrych · 2018
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Deep learning: A tool for computational nuclear physics
Gianina Alina Negoita, Glenn R Luecke, James P Vary, Pieter Maris, Andrey M Shirokov, Ik Jae Shin, Youngman Kim, Esmond G Ng, and Chao Yang · 2018
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