Octupole deformation in sm isotopes using covariant density functional theory

Other Title(s)

النشوة الثماني لنظائر ساماريوم

Dissertant

Mukhaymar, Sami Hani Sami

Thesis advisor

Abu Sarah, Hazim

University

Birzeit University

Faculty

Faculty of Science

Department

Department of Physics

University Country

Palestine (West Bank)

Degree

Master

Degree Date

2018

English Abstract

Octupole deformations play a signi cant role in the rare-earth region of the nuclear chart.

We will study the ground state properties in the even-even Sm isotopes, and investigate the role of octupole deformation and its e ect on several ground state properties, such as binding energy, binding energy per nucleon, neutron and proton mean radii, and two neutron separation energy.

For this investigation covariant density functional theory with BCS approximation for the pairing correlation will be employed

Main Subjects

Physics

Topics

No. of Pages

47

Table of Contents

Table of contents.

Abstract.

Abstract in Arabic.

Chapter One : Introduction.

Chapter Two : Formalism

Chapter Three : Discussion of Results.

Chapter Four : Conclusion.

References.

American Psychological Association (APA)

Mukhaymar, Sami Hani Sami. (2018). Octupole deformation in sm isotopes using covariant density functional theory. (Master's theses Theses and Dissertations Master). Birzeit University, Palestine (West Bank)
https://search.emarefa.net/detail/BIM-837084

Modern Language Association (MLA)

Mukhaymar, Sami Hani Sami. Octupole deformation in sm isotopes using covariant density functional theory. (Master's theses Theses and Dissertations Master). Birzeit University. (2018).
https://search.emarefa.net/detail/BIM-837084

American Medical Association (AMA)

Mukhaymar, Sami Hani Sami. (2018). Octupole deformation in sm isotopes using covariant density functional theory. (Master's theses Theses and Dissertations Master). Birzeit University, Palestine (West Bank)
https://search.emarefa.net/detail/BIM-837084

Language

English

Data Type

Arab Theses

Record ID

BIM-837084