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Prog. Theor. Phys. Vol. 25 No. 4 (1961) pp. 613-634
Antisymmetric Treatment of Deuteron-Stripping Reaction
— Stripping and Heavy-Particle-Stripping Reactions
—
Tsuyoshi Honda and
Haruo Ui*
Department of Physics, Rikkyo University, Tokyo
*Institute for Solid State Physics, University of Tokyo, Tokyo
(Received December 12, 1960)
Abstract:
The deuteron stripping reaction is reformulated by using completely antisymmetric wave functions: The amplitude of the reaction will be represented as a sum of two parts, stripping and heavy-particle-stripping amplitudes.
Quite analogous to the case of the “ordinary” stripping, the amplitude of the heavy-particle-stripping can be represented in terms of three reduced width amplitudes of bound nucleons, e.g. in (d, p) reaction, those of captured neutron and proton in the residual nucleus and that of the emitted proton in the target nucleus, or alternatively, in terms of two reduced width amplitudes of the emitted proton and captured deuteron in bound states. The latter formulation is natural generalization of Owen and Madansky's.
By making use of present formalism, one can calculate not only angular distribution but also the “magnitude” of heavy-particle-stripping cross section.
For simplicity, the Butler approximation, i.e. the cutoff Born approximation, is employed, though its generalization can be performed easily, as will be discussed in the final section.
Some qualitative discussions are given. Numerical calculations and more detailed comparison between the stripping and heavy-particle-stripping cross secions will appear in our subsequent paper.
URL :
http://ptp.ipap.jp/link?PTP/25/613/
DOI : 10.1143/PTP.25.613
References:
- S. T. Butler and O. H. Hittmair, Nuclear Stripping Reactions (John Wiley & Sons, Inc., New York, 1957).
N. Austern, “Direct Interaction Theories” in Fast Neutron Physics, Chapter 5, D. (1960).
G. Breit, “Theory of Resonance Reaction and Allied Topics”, Handbuch der Physik XLI/1 (1995), Kernreaktionen II: Theorie, and references therein.
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G. E. Owen and L. Madansky, Phys. Rev. 105 (1957), 1766[APS].
L. Madansky and G. E. Owen, Phys. Rev. 99 (1955), 1608[APS].
T. Kammuri, R. Nakasima and S. Takagi, Prog. Theor. Phys. 17 (1957), 306[PTP].
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A. P. French, Phys. Rev. 107 (1957), 1655[APS].
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M. Nagasaki, Prog. Theor. Phys. 16 (1956), 429[PTP].
- For example, J. P. Elliott and A. M. Lane, “the Nuclear Shell Model” Appendix 6.
Handbuch der Physik XXXIX (1957), Bau der Atomkerne.
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K. A. Brueckner and J. L. Gammel, Phys. Rev. 109 (1958), 1023[APS].
Full references of earlier work will be found in this paper.
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L. C. Gomes, J. D. Walecka and V. F. Weisskopf, Ann. of Phys. 3 (1958), 241[CrossRef].
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Citing Article(s) :
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Progress of Theoretical Physics Vol. 25 No. 4 (1961) pp. 635-645
:
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Deuteron Stripping and Heavy-Particle-Stripping Reactions
-
Tsuyoshi Honda and Haruo Ui
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Progress of Theoretical Physics Vol. 30 No. 1 (1963) pp. 45-59
:
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The Theory of Direct Nuclear Knock-out Reactions
-
Jae Young Park
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Progress of Theoretical Physics Vol. 31 No. 3 (1964) pp. 424-433
:
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The (d, α) Reaction and Cluster Structure of Light Nuclei
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Tsuyoshi Honda, Hisashi Horie, Yoshiteru Kudo and Haruo Ui
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Progress of Theoretical Physics Vol. 34 No. 6 (1965) pp. 942-955
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Effect of Final State Interactions in (α, 2α) Reactions
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Yoshiteru Kudo
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Progress of Theoretical Physics Vol. 40 No. 5 (1968) pp. 1023-1045
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Polarizations and Asymmetries in Stripping Reactions
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Makoto Tanifuji and Koichi Yazaki
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Progress of Theoretical Physics Vol. 44 No. 1 (1970) pp. 125-152
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Calculation of the Heavy Particle Stripping Process in the Reaction 11B(d, n)12C
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Shuhei Yamaji and Shiro Yoshida