## Quantum theory of scattering |

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29 pages matching **differential cross section** in this book

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### Contents

GENERAL THEORY OF SCATTERING OF A PARTICLE | 1 |

B INTEGRAL EQUATION FOR SCATTERING | 26 |

BORN AND OTHER APPROXIMATIONS | 37 |

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32 other sections not shown

### Common terms and phrases

adiabatic analytic angle angular momentum asymptotic form Born approximation bound Breit calculated causal transform central potential coefficients complex compound nucleus consider convergence corresponding defined denote determined deuteron differential cross section dispersion relations effective range eigenfunctions eigenstate eigenvalues elastic scattering electron excitation expansion experimental expression finite formula given Green's function H atom Hamiltonian hence Hulthen imaginary incident particle inelastic ingoing initial integral equation interaction low energy matrix elements neutron nuclear reactions nucleon nucleon-nucleon obtain operator optical potential outgoing wave phase shifts Phys plane wave polarization Proc proton rearrangement collisions replaced resonance satisfies scattered wave scattering amplitude scattering length scattering problem Schrodinger equation Sect seen singlet solution spin stationary subsection target theorem theory of scattering total cross section triplet unitary valid vanishes variational method variational principle velocity wave function width Wigner zero