Description of antiproton-nucleus scattering with the proton-nucleus dirac impulse approximation optical potential (1984)
- Autores:
- Autor USP: HUSSEIN, MAHIR SALEH - IF
- Unidade: IF
- Assunto: FÍSICA
- Idioma: Inglês
- Imprenta:
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ABNT
HUSSEIN, Mahir Saleh e CARLSON, B V e ISIDRO FILHO, Milton Pereira. Description of antiproton-nucleus scattering with the proton-nucleus dirac impulse approximation optical potential. . São Paulo: IFUSP. Disponível em: http://publica-sbi.if.usp.br/PDFs/pd472.pdf. Acesso em: 18 abr. 2024. , 1984 -
APA
Hussein, M. S., Carlson, B. V., & Isidro Filho, M. P. (1984). Description of antiproton-nucleus scattering with the proton-nucleus dirac impulse approximation optical potential. São Paulo: IFUSP. Recuperado de http://publica-sbi.if.usp.br/PDFs/pd472.pdf -
NLM
Hussein MS, Carlson BV, Isidro Filho MP. Description of antiproton-nucleus scattering with the proton-nucleus dirac impulse approximation optical potential [Internet]. 1984 ;[citado 2024 abr. 18 ] Available from: http://publica-sbi.if.usp.br/PDFs/pd472.pdf -
Vancouver
Hussein MS, Carlson BV, Isidro Filho MP. Description of antiproton-nucleus scattering with the proton-nucleus dirac impulse approximation optical potential [Internet]. 1984 ;[citado 2024 abr. 18 ] Available from: http://publica-sbi.if.usp.br/PDFs/pd472.pdf - Elastic enhancement factor in the 'ANTPOT.11 B' (p,'N IND.0') 'ANTPOT.11 C' reaction at e =14.3 mev
- Statistical doorway role of the dinucleus in heavy ion deep inelastic reactions
- Heavy-ion fusion reactions: comparison among different models
- Glauber calculation of heavy- ion and light-ion inclusive break-up cross section
- Hybrid model for the decay of nuclear giant resonances
- Fusion reactions with weakly bound nuclei
- Heavy ion excitation of giant resonances: a bridge from the elastic scattering to the inelastic data
- Coupled-channels study of 'ANTPOT.11 BE' coulomb excitation
- Quantal theory of fragment production in heavy-ion reactions
- Rotating ground states of trapped atomis in a Bose-Einstein condensate with arbitrary two-body interactions
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