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Point-Form Analysis of Elastic Deuteron Form Factors

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arxiv nucl-th/0005050 v2 pith:JCMIOOO6 submitted 2000-05-17 nucl-th

classification nucl-th
keywords formpoint-formdatadeuteronelasticfactorfactorsinteractions
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abstract

Point-form relativistic quantum mechanics is applied to elastic electron-deuteron scattering. The deuteron is modeled using relativistic interactions that are scattering-equivalent to the nonrelativistic Argonne $v_{18}$ and Reid '93 interactions. A point-form spectator approximation (PFSA) is introduced to define a conserved covariant current in terms of single-nucleon form factors. The PFSA is shown to provide an accurate description of data up to momentum transfers of 0.5 ${\rm GeV}^2$, but falls below the data at higher momentum transfers. Results are sensitive to the nucleon form factor parameterization chosen, particularly to the neutron electric form factor.

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Cited by 1 Pith paper

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  1. Reflection positivity in Euclidean formulations of relativistic quantum mechanics of particles

    hep-th 2025-06 conditional novelty 5.0 of 10

    By dropping locality, the authors construct reflection-positive Euclidean distributions, quasi-Schwinger functions, that encode relativistic quantum mechanics of finite particle systems with cluster properties.

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