Microscopic coupled-channel study of inelastic proton scattering from Ne 20
Coupled channel calculation of inelastic proton scattering from Ne 20 using Hartree-Fock wave functions
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Coupled channel calculation of inelastic proton scattering from Ne 20 using Hartree-Fock wave functions
Differential cross-section and polarization measurements in proton-proton scattering
Polarization measurements in pion-proton elastic scattering mechanics
Projected Hartree-Fock wave function analysis of inelastic proton scattering from neon-20
Polarization, differential cross section, and total reaction cross section data for proton scattering
Lockheed spectrometer data from orbits 1 through 20 of Ogo 5 are used to study proton scattering near the bow shock. Correlative UCLA fluxgate magnetometer data from the satellite are used to complete motion studies of the bow shock when spectrometer data are missing. Thirty-eight analyzable sets of multiple shock crossings show 358 shock encounters ranging from 10 to 22 earth radii and spanning sun-earth-satellite angles from 30 to 90 deg. Gross features of the study show that the location and shape of the bow shock are in good agreement with the hydrodynamic model of the bow shock.
Scattering cross section resulting from proton- proton reaction
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Inelastic proton scattering from indium 115
Proton-proton elastic scattering is investigated within the framework of the one pion exchange model in an attempt to model nucleon-nucleon interactions spanning the large range of energies important to cosmic ray shielding. A quantum field theoretic calculation is used to compute both differential and total cross sections. A scalar theory is then presented and compared to the one pion exchange model. The theoretical cross sections are compared to proton-proton scattering data to determine the validity of the models.
Nuclear structure effects on polarized proton scattering
Inelastic scattering of protons from In 115, using proton beam cyclotron
Negative pion proton elastic scattering differential cross sections from 1.71 to 5.53 GeV/c
Evaluation and comparison of various phase shift analyses of proton-alpha elastic scattering
Comparison of different phase-shift analyses of 40 mev proton-alpha elastic scattering and polarization data
Glauber approximations for elastic and inelastic scattering of protons by ground state hydrogen atoms, comparing with measurements
The interaction, scattering, and acceleration of Jovian ions through magnetohydrodynamic waves are investigated. A model of the Alfven speed in the plasma sheet for both inbound and outbound legs of the Voyager 1 encounter is presented, and underlying assumptions are discussed. Theoretical ingredients of a rotationally driven Jovian substorm are defined, and the convective growth rate of the fast wave for both a warm and a cold beam is derived. The mean-free path for scattering based on in situ measurements of magnetic fluctuations in the plasma sheet is estimated, and the results indicate that scattering of super-Alfvenic ions occurs on a regular basis throughout the plasma sheet, and the observed level of magnetic fluctuations is sufficiently high to stop ionospheric protons.