Analytical Proton Transfer Amplitude for Heavy Ion Induced Nuclear Reactions

Direct reactions between heavy ions have been studied widely using semi-classical theories. The Distorted Wave Born Approximation or DWBA has been extensively applied to analyse transfer reaction processes. Initial attempts to gain insights into the simple semi-classical parametrisation starting...

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Main Authors: Rajesh Kumar, P., Wong, Bernardine Renaldo
Format: Article
Published: American Institute of Physics 2011
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Online Access:http://library.oum.edu.my/repository/592/
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spelling my.oum.5922012-02-10T01:21:58Z Analytical Proton Transfer Amplitude for Heavy Ion Induced Nuclear Reactions Rajesh Kumar, P. Wong, Bernardine Renaldo Q Science (General) QC Physics Direct reactions between heavy ions have been studied widely using semi-classical theories. The Distorted Wave Born Approximation or DWBA has been extensively applied to analyse transfer reaction processes. Initial attempts to gain insights into the simple semi-classical parametrisation starting from the DWBA had focused mainly on neutron transfer reactions. An analytical formula for the semi-classical amplitude for the transfer of a single neutron between bound classical orbits states in heavy ion collisions that agrees well with the DWBA calculations has been successfully derived. In this paper, we have successfully derived the corresponding analytical expression for the proton transfer amplitude by using a technique analogous to the transfer of a single neutron between bound states. Our result reduces to the well known expression for the neutron transfer amplitude in the limit that the nuclear charge tends to zero. [ABSTRACT FROM AUTHOR] American Institute of Physics 2011 Article PeerReviewed Rajesh Kumar, P. and Wong, Bernardine Renaldo (2011) Analytical Proton Transfer Amplitude for Heavy Ion Induced Nuclear Reactions. AIP Conference Proceedings, 1328 (1). pp. 110-112. ISSN 0094243X http://library.oum.edu.my/repository/592/
institution Open University Malaysia
building OUM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Open University Malaysia
content_source OUM Knowledge Repository
url_provider http://library.oum.edu.my/repository/
topic Q Science (General)
QC Physics
spellingShingle Q Science (General)
QC Physics
Rajesh Kumar, P.
Wong, Bernardine Renaldo
Analytical Proton Transfer Amplitude for Heavy Ion Induced Nuclear Reactions
description Direct reactions between heavy ions have been studied widely using semi-classical theories. The Distorted Wave Born Approximation or DWBA has been extensively applied to analyse transfer reaction processes. Initial attempts to gain insights into the simple semi-classical parametrisation starting from the DWBA had focused mainly on neutron transfer reactions. An analytical formula for the semi-classical amplitude for the transfer of a single neutron between bound classical orbits states in heavy ion collisions that agrees well with the DWBA calculations has been successfully derived. In this paper, we have successfully derived the corresponding analytical expression for the proton transfer amplitude by using a technique analogous to the transfer of a single neutron between bound states. Our result reduces to the well known expression for the neutron transfer amplitude in the limit that the nuclear charge tends to zero. [ABSTRACT FROM AUTHOR]
format Article
author Rajesh Kumar, P.
Wong, Bernardine Renaldo
author_facet Rajesh Kumar, P.
Wong, Bernardine Renaldo
author_sort Rajesh Kumar, P.
title Analytical Proton Transfer Amplitude for Heavy Ion Induced Nuclear Reactions
title_short Analytical Proton Transfer Amplitude for Heavy Ion Induced Nuclear Reactions
title_full Analytical Proton Transfer Amplitude for Heavy Ion Induced Nuclear Reactions
title_fullStr Analytical Proton Transfer Amplitude for Heavy Ion Induced Nuclear Reactions
title_full_unstemmed Analytical Proton Transfer Amplitude for Heavy Ion Induced Nuclear Reactions
title_sort analytical proton transfer amplitude for heavy ion induced nuclear reactions
publisher American Institute of Physics
publishDate 2011
url http://library.oum.edu.my/repository/592/
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score 13.160551