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Short range correlations and the isospin dependence of nuclear correlation functions

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arxiv 1710.07966 v4 pith:Z3DAGESN submitted 2017-10-22 nucl-th nucl-ex

Short range correlations and the isospin dependence of nuclear correlation functions

classification nucl-th nucl-ex
keywords calculationscorrelationfunctionscorrelationsinitiodependencefeaturesfunction
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Pair densities and associated correlation functions provide a critical tool for introducing many-body correlations into a wide-range of effective theories. Ab initio calculations show that two-nucleon pair-densities exhibit strong spin and isospin dependence. However, such calculations are not available for all nuclei of current interest. We therefore provide a simple model, which involves combining the short and long separation distance behavior using a single blending function, to accurately describe the two-nucleon correlations inherent in existing ab initio calculations. We show that the salient features of the correlation function arise from the features of the two-body short-range nuclear interaction, and that the suppression of the pp and nn pair-densities caused by the Pauli principle is important. Our procedure for obtaining pair-density functions and correlation functions can be applied to heavy nuclei which lack ab initio calculations.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. Schr\"{o}dinger Generator for High-Dimensional Integration and Sampling on Quantum Many-Body States

    nucl-th 2026-08 reject novelty 6.0

    A two-stage sampler (adaptive marginal map plus normalizing flow, then resampling) is proposed and shown on model nuclear densities up to D=624, though a core Jacobian equation appears sign-inconsistent.