For a large class of non-local, non separable potentials with non-compact support, the solution of the radial integrodifferential equationmaybe reduced to the solution of a homogeneous linear integral equation of Fredholm type with a quadratically integrable kernel. In this way we derive expansions
Non-local potentials and rotational bands of resonances in ion collisions
β Scribed by E. De Micheli; G.A. Viano
- Book ID
- 106259377
- Publisher
- Springer
- Year
- 2001
- Tongue
- English
- Weight
- 241 KB
- Volume
- 10
- Category
- Article
- ISSN
- 1434-601X
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π SIMILAR VOLUMES
Exact computations for rotational excitation are compared with the close-coupling approximation and with improved schemes which incorporate adiabatically the closed channels. The "direct ~ transition probability and the resonance energies can be predicted by a modified close-coupling scheme.
In ion trap mass spectrometry, collisional experiments are easily performed by precursor ion selection and software controlled operations. Collisional activation can be achieved by two different approaches, resonant and non-resonant excitation. Different results are usually obtained by the two appro