arXiv · nucl-ex/0408003
Investigation of the conjectured nucleon deformation at low momentum transfer
Abstract
We report new precise H$(e,e^\prime p)π^0$ measurements at the $Δ(1232)$ resonance at $Q^2= 0.127$ (GeV/c)$^2$ using the MIT/Bates out-of-plane scattering (OOPS) facility. The data reported here are particularly sensitive to the transverse electric amplitude ($E2$) of the $γ^* N\toΔ$ transition. Analyzed together with previous data yield precise quadrupole to dipole amplitude ratios $EMR = (-2.3 \pm 0.3_{stat+sys} \pm 0.6_{model})%$ and $CMR = (-6.1 \pm 0.2_{stat+sys}\pm 0.5_{model})%$ and for $M^{3/2}_{1+} = (41.4 \pm 0.3_{stat+sys}\pm 0.4_{model})(10^{-3}/m_{π^+})$. They give credence to the conjecture of deformation in hadronic systems favoring, at low $Q^2$, the dominance of mesonic effects.
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N. F. Sparveris, OOPS Collaboration. 2004-08-04. Investigation of the conjectured nucleon deformation at low momentum transfer. https://doi.org/10.1103/physrevlett.94.022003
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