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Theoretical Study of Spin Observables in $pd$ Elastic Scattering at Energies $T_p = 800-1000$ MeV

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arxiv 1910.05722 v1 pith:6Y5OOSMJ submitted 2019-10-13 nucl-th

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keywords modelobservablesdatafoundtheoreticalagreementamplitudescalculations
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abstract

Various spin observables (analyzing powers and spin-correlation parameters) in $pd$ elastic scattering at $T_p = 800-1000$ MeV are analyzed within the framework of the refined Glauber model. The theoretical model uses as input spin-dependent $NN$ amplitudes obtained from the most recent partial-wave analysis and also takes into account the deuteron $D$ wave and charge-exchange effects. Predictions of the refined Glauber model are compared with the existing experimental data. Reasonable agreement between the theoretical calculations and experimental data at low momentum transfers $|t| \lesssim 0.2$ (GeV/$c)^2$ is found for all observables considered. Moderate discrepancies found in this region are shown to be likely due to uncertainties in the input $NN$ amplitudes. Qualitative agreement at higher momentum transfers is also found for most observables except the tensor ones with mixed $x$ and $z$ polarization components. Possible reasons for observed deviations of the model calculations from the data at $|t| > 0.2$ (GeV/$c)^2$ are discussed.

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

  1. Relations between spin observables of the reactions $dd\to npd$ and $pd\to pd$ in impulse approximation

    nucl-th 2025-06 conditional novelty 6.0 of 10

    In the impulse approximation, the analyzing powers and spin correlations of the dd to npd breakup equal those of pd elastic scattering up to constant factors 1, 2/3, or zero.

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