## Interactions of High Energy Particles with NucleiNational Bureau of Standards, 1975 - 69 pages |

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**depend**on its internal structure . In these notes the interactions of various different particles with nuclear targets are to be con- sidered . Of course , we cannot cover all problems related to the interactions of hadrons , photons ... Page 11

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**depends**on d which sits in the Fourier transform of the shadow . Hence , away from the scatterer , one would guess the following shape of the wave ( compare D. R. Yennie article in [ S3 ] ) : 1 eik 2- d2d exp ( iz√k2 - d2 ) exp ( id ... Page 13

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**depend**on 7 when all nucleons are " equivalent " ) đ3b exp ( i △ · b ) [ d23⁄4 ̧ @ ...... ď23⁄4 ̧ @ Ĥp ́ ( 8 , ̧ • ) { 1− ĤI ( 1−5μ ( b + 8 , ̧ ° ) ) " }。( a ) đỏ exp ( iA + b ) ( d8 ... 81 · { 1– ÎI ( 1 – Ã ‚ ( b + s ... Page 15

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**depend**on energy , one gets the total cross section ( from the optical theorem ) which is energy independent . So , it seems to be difficult to reconcile this model with the recent evidence for the increase of the total hadron - proton ... Page 26

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**depend**on spins . So , if not for the S12 term in ( 3.10 ) , we would have ( m | M | m ' ) = 0 for mm ' . In fact the ( m | | m ' ) contributions are indeed the most important but they always lead to a sharp diffractive minimum : log ...### Common terms and phrases

absorption additivity analysis approximately assume attenuation beam coherent collision complete components compute consider contribution corrections Coulomb Coulomb interactions coupling cross section db exp db exp i▲·b depend describe deuteron diffractive production processes discussed effects elastic scattering elastic scattering amplitude equation example excited existence experimental experiments expression fact factor field final formula forward given gives Glauber ground hadrons Hence high energy limit important incident particle inelastic initial Institute interactions introduce magnetic mass measurement momentum transfer multiple scattering Note nuclear nuclear targets nuclei nucleon numbers objects obtained parameters phase shifts photon photoproduction physical position possible problem profiles regeneration shadowing single Standards step strong structure technical vector meson wave function weak