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Ab initio short-range-correlation scaling factors from light to medium-mass nuclei

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arxiv 1903.12587 v2 pith:66GSAPIX submitted 2019-03-29 nucl-th nucl-ex

classification nucl-thnucl-ex
keywords factorsscalinginitionucleiscatteringeffectlightmedium-mass
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abstract

High-energy scattering processes, such as deep inelastic scattering (DIS) and quasielastic (QE) scattering provide a wealth of information about the structure of atomic nuclei. The remarkable discovery of the empirical linear relationship between the slope of the European Muon Collaboration (EMC) effect in DIS and the short-range-correlation (SRC) scaling factors $a_2$ in QE kinematics is naturally explained in terms of scale separation in effective field theory. This explanation has powerful consequences, allowing us to calculate and predict SRC scaling factors from ab initio low-energy nuclear theory. We present ab initio calculations of SRC scaling factors for a nucleus $A$ relative to the deuteron $a_2(A/d)$ and relative to $^3\rm He$ $a_2(A/^3\rm He)$ in light and medium-mass nuclei. Our framework further predicts that the EMC effect and SRC scaling factors have minimal or negligible isovector corrections.

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Cited by 1 Pith paper

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

  1. Gluonic Probe for the Short Range Correlation in Nucleus

    hep-ph 2019-08 conditional novelty 6.0 of 10

    Gluon-sensitive heavy flavor production is proposed as a probe of short-range correlations, predicting that sub-threshold J/psi cross section ratios equal known SRC ratios.

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