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Open AccessJournal ArticleDOI

Ab initio no core shell model

TLDR
In this paper, a non-perturbative ab initio no core shell model (NCSM) was proposed to solve the properties of nuclei exactly for arbitrary nucleon-nucleon (N N ) and N N + ǫ − three-N n interactions with exact preservation of all symmetries.
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This article is published in Progress in Particle and Nuclear Physics.The article was published on 2013-03-01 and is currently open access. It has received 547 citations till now. The article focuses on the topics: Ab initio.

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Citations
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Ab Initio Many-Body Calculations Of Nucleon-Nucleus Scattering

TL;DR: In this paper, a new ab initio many-body approach capable of describing simultaneously both bound and scattering states in light nuclei, by combining the resonating-group method with the use of realistic interactions, and a microscopic and consistent description of the nucleon clusters.
Journal ArticleDOI

Systematics of 2+ states in C isotopes from the no-core shell model

TL;DR: In this paper, low-lying states of even carbon isotopes in the range A = 10-20 within the large-scale no-core shell model were studied using several accurate nucleon-nucleon (NN) as well as NN plus three nucleon interactions.
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Challenges in Nuclear Structure Theory

TL;DR: The goal of nuclear structure theory is to build a comprehensive microscopic framework in which properties of nuclei and extended nuclear matter, and nuclear reactions and decays can all be consistently described.
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Evidence for Z=6 `magic number' in neutron-rich carbon isotopes

TL;DR: The authors analyse the proton radii, binding energies and electric quadrupole transition rates of neutron-rich carbon isotopes at proton number six and use nuclear structure models to support the magic number Z’= 6, which can be explained by the state-of-the-art nuclear theory with chiral nucleon–nucleon and three-n nucleon forces, which are rooted in the quantum chromodynamics.
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$^7$Be and $^7$Li nuclei within the no-core shell model with continuum

TL;DR: In this paper, the authors used the no-core shell model with continuum (NCSMC) method to analyze the binary mass partitions involved in the formation of radiative-capture reactions.
References
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Journal ArticleDOI

CP Violation in the Renormalizable Theory of Weak Interaction

TL;DR: In this article, it was shown that no CP-violating interactions exist in the quartet scheme without introducing any other new fields, and that the strong interaction must be chiral SU ( 4) X SU( 4) invariant as precisely as the conservation of the third component of the iso-spin.
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Unitary Symmetry and Leptonic Decays

TL;DR: In this article, an analysis of leptonic decays based on unitary symmetry for strong interactions and the V-A theory for weak interactions is presented, and an explanation for the observed predominance of the LAMBDA yields + e/sup -/ + nu decay over the lamBDA /sup −/ yields n + e /sup + n decay.
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Evidence for cardiomyocyte renewal in humans

TL;DR: The capacity to generate cardiomyocytes in the adult human heart suggests that it may be rational to work toward the development of therapeutic strategies aimed at stimulating this process in cardiac pathologies.
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Accurate nucleon-nucleon potential with charge-independence breaking

TL;DR: The authors present a new high-quality nucleon-nucleon potential with explicit charge dependence and charge asymmetry, which they designate Argonne {upsilon}{sub 18}.
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Local phenomenological nucleon-nucleon potentials

TL;DR: Hard (infinitely hard) and soft (Yukawa) core potentials have been fit to Yale and Livermore phase parameters and low-energy data as discussed by the authors, and it is found that neither the short-range behavior of the potentials nor the central-to-tensor ratio in the 3 S 1 - 3 D 1 state is well determined by the data.
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