Ab Initio No-Core Shell Model Calculations for Light Nuclei

Ab Initio No-Core Shell Model Calculations for Light Nuclei
Title Ab Initio No-Core Shell Model Calculations for Light Nuclei PDF eBook
Author
Publisher
Pages 39
Release 2007
Genre
ISBN

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No-Core Shell Model Calculations in Light Nuclei with Three-Nucleon Forces

No-Core Shell Model Calculations in Light Nuclei with Three-Nucleon Forces
Title No-Core Shell Model Calculations in Light Nuclei with Three-Nucleon Forces PDF eBook
Author W. E. Ormand
Publisher
Pages 6
Release 2004
Genre
ISBN

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The ab initio No-Core Shell Model (NCSM) has recently been expanded to include nucleon-nucleon (NN) and three-nucleon (3N) interactions at the three-body cluster level. Here it is used to predict binding energies and spectra of p-shell nuclei based on realistic NN and 3N interactions. It is shown that 3N force (3NF) properties can be studied in these nuclear systems. First results show that interactions based on chiral perturbation theory lead to a realistic description of {sup 6}Li.

Ab Initio No-Core Shell Model Calculations Using Realistic Two- and Three-Body Interactions

Ab Initio No-Core Shell Model Calculations Using Realistic Two- and Three-Body Interactions
Title Ab Initio No-Core Shell Model Calculations Using Realistic Two- and Three-Body Interactions PDF eBook
Author W. E. Ormand
Publisher
Pages 6
Release 2004
Genre
ISBN

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There has been significant progress in the ab initio approaches to the structure of light nuclei. One such method is the ab initio no-core shell model (NCSM). Starting from realistic two- and three-nucleon interactions this method can predict low-lying levels in p-shell nuclei. In this contribution, we present a brief overview of the NCSM with examples of recent applications. We highlight our study of the parity inversion in {sup 11}Be, for which calculations were performed in basis spaces up to 9{Dirac_h}{Omega} (dimensions reaching 7 x 10{sup 8}). We also present our latest results for the p-shell nuclei using the Tucson-Melbourne TM three-nucleon interaction with several proposed parameter sets.

The Ab-Initio No-Core Shell Model and Light Nuclei

The Ab-Initio No-Core Shell Model and Light Nuclei
Title The Ab-Initio No-Core Shell Model and Light Nuclei PDF eBook
Author
Publisher
Pages 8
Release 2010
Genre
ISBN

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No-Core Shell Model and Reactions

No-Core Shell Model and Reactions
Title No-Core Shell Model and Reactions PDF eBook
Author
Publisher
Pages
Release 2005
Genre
ISBN

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There has been a significant progress in ab initio approaches to the structure of light nuclei. Starting from realistic two- and three-nucleon interactions the ab initio no-core shell model (NCSM) can predict low-lying levels in p-shell nuclei. It is a challenging task to extend ab initio methods to describe nuclear reactions. In this contribution, we present a brief overview of the NCSM with examples of recent applications as well as the first steps taken toward nuclear reaction applications. In particular, we discuss cross section calculations of p+[sup 6]Li and [sup 6]He+p scattering as well as a calculation of the astrophysically important [sup 7]Be(p, [gamma])[sup 8]B S-factor.

Recent Developments in No-Core Shell-Model Calculations

Recent Developments in No-Core Shell-Model Calculations
Title Recent Developments in No-Core Shell-Model Calculations PDF eBook
Author
Publisher
Pages 66
Release 2009
Genre
ISBN

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We present an overview of recent results and developments of the no-core shell model (NCSM), an ab initio approach to the nuclear many-body problem for light nuclei. In this aproach, we start from realistic two-nucleon or two- plus three-nucleon interactions. Many-body calculations are performed using a finite harmonic-oscillator (HO) basis. To facilitate convergence for realistic inter-nucleon interactions that generate strong short-range correlations, we derive effective interactions by unitary transformations that are tailored to the HO basis truncation. For soft realistic interactions this might not be necessary. If that is the case, the NCSM calculations are variational. In either case, the ab initio NCSM preserves translational invariance of the nuclear many-body problem. In this review, we, in particular, highlight results obtained with the chiral two- plus three-nucleon interactions. We discuss efforts to extend the applicability of the NCSM to heavier nuclei and larger model spaces using importance-truncation schemes and/or use of effective interactions with a core. We outline an extension of the ab initio NCSM to the description of nuclear reactions by the resonating group method technique. A future direction of the approach, the ab initio NCSM with continuum, which will provide a complete description of nuclei as open systems with coupling of bound and continuum states is given in the concluding part of the review.

From Non-Hermitian Effective Operators to Large-Scale No-Core Shell Model Calculations for Light Nuclei

From Non-Hermitian Effective Operators to Large-Scale No-Core Shell Model Calculations for Light Nuclei
Title From Non-Hermitian Effective Operators to Large-Scale No-Core Shell Model Calculations for Light Nuclei PDF eBook
Author P. Navratil
Publisher
Pages 14
Release 2006
Genre
ISBN

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No-core shell model (NCSM) calculations using ab initio effective interactions are very successful in reproducing experimental nuclear spectra. The main theoretical approach is the use of effective operators, which include correlations left out by the truncation of the model space to a numerically tractable size. We review recent applications of the effective operator approach, within a NCSM framework, to the renormalization of the nucleon-nucleon interaction, as well as scalar and tensor operators.