Applying nuclear shell model to study the energy levels for 18F nucleus

Other Title(s)

تطبيق أنموذج القشرة النووي لدراسة مستويات الطاقة لنواة 18 F

Author

Hasan, Ali Khalaf

Source

Journal of Kufa-Physics

Issue

Vol. 1, Issue 1 (s) (31 Mar. 2009)4 p.

Publisher

University of Kufa Faculty of Science Department of Physics

Publication Date

2009-03-31

Country of Publication

Iraq

No. of Pages

4

Main Subjects

Physics

Abstract AR

في هذا البحث تم اختيار انموذج القشرة النووي لدراسة مستويات الطاقة لنواة18F والتي توصف بوجود نيوكلونين (بروتون ونيوترون ) خارج القلب المغلق 16O يحتلان القشرة d5/2 s1/2 d3/2 .في هذه الحسابات استخدم تفاعل دلتا السطحي SDIكتفاعل متبقي بين الجسيمين .

وبعد مقارنة نتائج البحث بالنتائج العملية وجدنا تقاربا مقبولا بينهما ، كما تم تحديد بعض قيم الزخم الزاوي لمستويات طاقة لم تحدد عمليا .

Abstract EN

In this work, we applied the nuclear shell model to study the energy levels for 18F nucleus which contain two nucleons (proton and neutron) outside 16O core and occupy the (d5 / 2 s1 / 2 d3 / 2) shell.

In this calculations used the Surface Delta Interaction (SDI) is employed as a residual inter-action.

Comparison with experimental values and found to be rather good agreement, and determined some of the total angular momentum values that were undetermined experimentally.

American Psychological Association (APA)

Hasan, Ali Khalaf. 2009. Applying nuclear shell model to study the energy levels for 18F nucleus. Journal of Kufa-Physics،Vol. 1, no. 1 (s).
https://search.emarefa.net/detail/BIM-326060

Modern Language Association (MLA)

Hasan, Ali Khalaf. Applying nuclear shell model to study the energy levels for 18F nucleus. Journal of Kufa-Physics Vol. 1, no. 1 (Special issue) (2009).
https://search.emarefa.net/detail/BIM-326060

American Medical Association (AMA)

Hasan, Ali Khalaf. Applying nuclear shell model to study the energy levels for 18F nucleus. Journal of Kufa-Physics. 2009. Vol. 1, no. 1 (s).
https://search.emarefa.net/detail/BIM-326060

Data Type

Journal Articles

Language

English

Notes

Includes bibliographical references

Record ID

BIM-326060