The Elastic and Inelastic Electron-Nucleus Scattering Form Factors for Be9 Nucleus

The computations of the elastic and inelastic Coulomb form factors for the electron-nucleus scattering of beryllium nucleus Be9 have performed with core polarization (CP) effects including the realistic Michigan sum of three range Yukawa (M3Y) interaction and the other residual interaction which is...

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Main Authors: Hawar Muhamad Dlshad, Aziz Hama-Raheem Fatah, Adil Mohammed Hussain
Format: Article
Language:English
Published: University of Human Development 2020-08-01
Series:UHD Journal of Science and Technology
Subjects:
Online Access:http://journals.uhd.edu.iq/index.php/uhdjst/article/view/739/555
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spelling doaj-6a4176c70f34409fbd2500142d5b98542021-01-09T18:30:11ZengUniversity of Human DevelopmentUHD Journal of Science and Technology2521-42092521-42172020-08-01425662https://doi.org/10.21928/uhdjst.v4n2y2020.pp56-62The Elastic and Inelastic Electron-Nucleus Scattering Form Factors for Be9 NucleusHawar Muhamad Dlshad0Aziz Hama-Raheem Fatah1Adil Mohammed Hussain2Department of Physics, College of Science, University of Sulaimani, Sulaymaniyah, Kurdistan Region, IraqDepartment of Physics, College of Science, University of Sulaimani, Sulaymaniyah, Kurdistan Region, IraqDepartment of Physics, College of Science, University of Sulaimani, Sulaymaniyah, Kurdistan Region, IraqThe computations of the elastic and inelastic Coulomb form factors for the electron-nucleus scattering of beryllium nucleus Be9 have performed with core polarization (CP) effects including the realistic Michigan sum of three range Yukawa (M3Y) interaction and the other residual interaction which is modified surface delta interaction (MSDI). In the calculations, root mean square charge density and charge radii include for the ground states. The perturbation theory is adopted to compute the CP using the harmonic oscillators potential to calculate single-particle radial wave functions. The comparison has been done between the theoretical calculations of Coulomb form factors by MSDI interaction, realistic M3Y interaction, and the experimental results that measured by other workers, it noticed that the Coulomb form factors for the (M3Y) interaction gave a reasonable depiction of the measured datahttp://journals.uhd.edu.iq/index.php/uhdjst/article/view/739/555beryllium nucleuscore polarization effectelectron scatteringform factorharmonic oscillator
collection DOAJ
language English
format Article
sources DOAJ
author Hawar Muhamad Dlshad
Aziz Hama-Raheem Fatah
Adil Mohammed Hussain
spellingShingle Hawar Muhamad Dlshad
Aziz Hama-Raheem Fatah
Adil Mohammed Hussain
The Elastic and Inelastic Electron-Nucleus Scattering Form Factors for Be9 Nucleus
UHD Journal of Science and Technology
beryllium nucleus
core polarization effect
electron scattering
form factor
harmonic oscillator
author_facet Hawar Muhamad Dlshad
Aziz Hama-Raheem Fatah
Adil Mohammed Hussain
author_sort Hawar Muhamad Dlshad
title The Elastic and Inelastic Electron-Nucleus Scattering Form Factors for Be9 Nucleus
title_short The Elastic and Inelastic Electron-Nucleus Scattering Form Factors for Be9 Nucleus
title_full The Elastic and Inelastic Electron-Nucleus Scattering Form Factors for Be9 Nucleus
title_fullStr The Elastic and Inelastic Electron-Nucleus Scattering Form Factors for Be9 Nucleus
title_full_unstemmed The Elastic and Inelastic Electron-Nucleus Scattering Form Factors for Be9 Nucleus
title_sort elastic and inelastic electron-nucleus scattering form factors for be9 nucleus
publisher University of Human Development
series UHD Journal of Science and Technology
issn 2521-4209
2521-4217
publishDate 2020-08-01
description The computations of the elastic and inelastic Coulomb form factors for the electron-nucleus scattering of beryllium nucleus Be9 have performed with core polarization (CP) effects including the realistic Michigan sum of three range Yukawa (M3Y) interaction and the other residual interaction which is modified surface delta interaction (MSDI). In the calculations, root mean square charge density and charge radii include for the ground states. The perturbation theory is adopted to compute the CP using the harmonic oscillators potential to calculate single-particle radial wave functions. The comparison has been done between the theoretical calculations of Coulomb form factors by MSDI interaction, realistic M3Y interaction, and the experimental results that measured by other workers, it noticed that the Coulomb form factors for the (M3Y) interaction gave a reasonable depiction of the measured data
topic beryllium nucleus
core polarization effect
electron scattering
form factor
harmonic oscillator
url http://journals.uhd.edu.iq/index.php/uhdjst/article/view/739/555
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