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- W124887903 abstract "A model for high-energy $ensuremath{pi}p$, $mathrm{pp}$, and $overline{p}p$ elastic scattering at small momentum transfer is presented, based on the assumed dominance of a few Regge poles in the crossed channel. For $ensuremath{pi}p$ scattering these are the $P$, ${P}^{ensuremath{'}}$, and $ensuremath{rho}$ poles; for $mathrm{pp}$ and $overline{p}p$, ignoring isospin dependence, they are $P$, ${P}^{ensuremath{'}}$, and $ensuremath{omega}$. This model fits a wide variety of data, including the differential cross sections that shrink for $mathrm{pp}$ but not for $ensuremath{pi}p$ or $overline{p}p$, recent results from Brookhaven on total cross sections and ratios of the real to imaginary parts of the forward scattering amplitude, and also recent $ensuremath{pi}p$ and $mathrm{pp}$ polarization results, but it gives zero polarization for $ensuremath{pi}p$ charge-exchange scattering. (Although the latter disagrees with experiment, additions to the model to correct this insufficiency would affect the other results but little.) The factorization property of Regge poles is tested by these fits to data for the $P$ and ${P}^{ensuremath{'}}$ couplings." @default.
- W124887903 created "2016-06-24" @default.
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- W124887903 date "1968-01-25" @default.
- W124887903 modified "2023-09-24" @default.
- W124887903 title "Regge-Pole Model forπp,pp, andp¯pScattering" @default.
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- W124887903 doi "https://doi.org/10.1103/physrev.165.1615" @default.
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