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Generalized nuclear contacts and the nucleon's momentum distributions

1 Pith paper cite this work, alongside 87 external citations. Polarity classification is still indexing.

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87 external citations · Pith
abstract

The general nuclear contact matrices are defined, taking into consideration all partial waves and finite-range interactions, extending Tan's work for the zero range model. The properties of these matrices are discussed and the relations between the contacts and the one-nucleon and two-nucleon momentum distributions are derived. Using these relations, a new asymptotic connection between the one-nucleon and two-nucleon momentum distributions, describing the two-body short-range correlations in nuclei, is obtained. Using available numerical data, we extract few connections between the different contacts and verify their relations to the momentum distributions. The numerical data also allows us to identify the main nucleon momentum range affected by two-body short-range correlations. Utilizing these relations and the numerical data, we also verify a previous independent prediction connecting between the Levinger constant and the contacts. This work provides an important indication for the relevance of the contact formalism to nuclear systems, and should open the path for revealing more useful relations between the contacts and interesting quantities of nuclei and nuclear matter.

fields

nucl-ex 1

years

2026 1

verdicts

UNVERDICTED 1

representative citing papers

Short-range correlations in nuclei

nucl-ex · 2026-05-12 · unverdicted · novelty 2.0

Short-range correlated pairs account for roughly 20% of nucleons in any nucleus and nearly all high-momentum nucleons, originating from the nucleon-nucleon tensor force.

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  • Short-range correlations in nuclei nucl-ex · 2026-05-12 · unverdicted · none · ref 129 · internal anchor

    Short-range correlated pairs account for roughly 20% of nucleons in any nucleus and nearly all high-momentum nucleons, originating from the nucleon-nucleon tensor force.