dorsal/arxiv
View SchemaContinuum-discretized coupled-channels method for four-body breakup reactions
| Authors | M. Kamimura, T. Matsumoto, E. Hiyama, K. Ogata, Y. Iseri, M. Yahiro |
|---|---|
| Categories | |
| ArXiv ID | nucl-th/0506012 |
| URL | https://arxiv.org/abs/nucl-th/0506012 |
| DOI | 10.1063/1.2114706 |
Abstract
Development of the method of CDCC (Continuum-Discretized Coupled-Channels) from the level of three-body CDCC to that of four-body CDCC is reviewed. Introduction of the pseudo-state method based on the Gaussian expansion method for discretizing the continuum states of two-body and three-body projectiles plays an essential role in the development. Furthermore, introduction of the complex-range Gaussian basis functions is important to improve the CDCC for nuclear breakup so as to accomplish that for Coulomb and nuclear breakup. A successful application of the four-body CDCC to $^6$He+$^{12}$C scattering at 18 and 229.8 MeV is reported.
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"abstract": "Development of the method of CDCC (Continuum-Discretized Coupled-Channels)\nfrom the level of three-body CDCC to that of four-body CDCC is reviewed.\nIntroduction of the pseudo-state method based on the Gaussian expansion method\nfor discretizing the continuum states of two-body and three-body projectiles\nplays an essential role in the development. Furthermore, introduction of the\ncomplex-range Gaussian basis functions is important to improve the CDCC for\nnuclear breakup so as to accomplish that for Coulomb and nuclear breakup. A\nsuccessful application of the four-body CDCC to $^6$He+$^{12}$C scattering at\n18 and 229.8 MeV is reported.",
"arxiv_id": "nucl-th/0506012",
"authors": [
"M. Kamimura",
"T. Matsumoto",
"E. Hiyama",
"K. Ogata",
"Y. Iseri",
"M. Yahiro"
],
"categories": [
"nucl-th"
],
"doi": "10.1063/1.2114706",
"title": "Continuum-discretized coupled-channels method for four-body breakup reactions",
"url": "https://arxiv.org/abs/nucl-th/0506012"
},
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