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arXiv:2402.08199·v1·Nuclear Theory

A=3 (e,e') cross-section ratios and the isospin structure of short-range correlations

A. Schmidt · A. W. Denniston · E. M. Seroka · N. Barnea · D.W. Higinbotham · I. Korover · G.A. Miller · E. Piasetzky · M. Strikman · L.B. Weinstein · R. Weiss · O. Hen

Abstract

We study the relation between measured high-, high-, Helium-3 to Tritium, inclusive-scattering cross-section ratios and the relative abundance of high-momentum neutron-proton () and proton-proton () short-range correlated (SRC) nucleon pairs in three-body () nuclei. Analysis of this data using a simple pair-counting cross-section model suggested a much smaller ratio than previously measured in heavier nuclei, questioning our understanding of nuclei and, by extension, all other nuclei. Here we examine this finding using spectral-function-based cross-section calculations, with both an \textit{ab initio} spectral function and effective Generalized Contact Formalism (GCF) spectral functions using different nucleon-nucleon interaction models. The \textit{ab initio} calculation agrees with the data, showing good understanding of the structure of nuclei. An 8\% uncertainty on the simple pair-counting model, as implied by the difference between it and the \textit{ab initio} calculation, gives a factor of 5 uncertainty in the extracted ratio. Thus we see no evidence for the claimed ``unexpected structure in the high-momentum wavefunction for hydrogen-3 and helium-3''.

Comments: 6 pages, 4 figures

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