58Ni as an Electron Diffraction Grating with 48Ca as an Inert Core

     The configurations of the nuclear shell model were employed to study and inspect the form factor of a scattering electron in the 58Ni nucleus. The wave function of the model space was obtained through the (fp-orbits) and (fpd6) effective interactions within the model space by utilizing the Har...

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Main Authors: Ali A. Mohammed, Firas Z. Majeed
Format: Article
Language:English
Published: University of Baghdad 2025-04-01
Series:Ibn Al-Haitham Journal for Pure and Applied Sciences
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Online Access:https://jih.uobaghdad.edu.iq/index.php/j/article/view/4005
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author Ali A. Mohammed
Firas Z. Majeed
author_facet Ali A. Mohammed
Firas Z. Majeed
author_sort Ali A. Mohammed
collection DOAJ
description      The configurations of the nuclear shell model were employed to study and inspect the form factor of a scattering electron in the 58Ni nucleus. The wave function of the model space was obtained through the (fp-orbits) and (fpd6) effective interactions within the model space by utilizing the Harmonic Oscillator wave functions as a single particle's wave function. In the (fp-LS) shell, the correction for the main calculations of model space was performed by the 1st-order perturbation theory to estimate the effects of core polarization with the (2ℏω) energy of excitation that has been carried out. Core polarization combined the model space with the discarded space (higher configuration core). Via model space, the interaction of effective (M3Y-P2) for linking the active particles of a model space with the particle-hole pair. The interaction of two bodies of Michigan 3-range Yukawa (M3Y) was used as a residual interaction for calculating the matrix elements of core polarization. Eventually, form factor theoretical results and the available experimental results were compared.  
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spelling doaj-art-e685c24ff7d6448bb1c2aed37afda3eb2025-08-20T03:18:39ZengUniversity of BaghdadIbn Al-Haitham Journal for Pure and Applied Sciences1609-40422521-34072025-04-0138210.30526/38.2.400558Ni as an Electron Diffraction Grating with 48Ca as an Inert CoreAli A. Mohammed0https://orcid.org/0009-0008-1924-6701Firas Z. Majeed1https://orcid.org/0000-0001-6527-3913Department of Physics, College of Science, University of Baghdad ,Baghdad, Iraq.Department of Physics, College of Science, University of Baghdad ,Baghdad, Iraq.      The configurations of the nuclear shell model were employed to study and inspect the form factor of a scattering electron in the 58Ni nucleus. The wave function of the model space was obtained through the (fp-orbits) and (fpd6) effective interactions within the model space by utilizing the Harmonic Oscillator wave functions as a single particle's wave function. In the (fp-LS) shell, the correction for the main calculations of model space was performed by the 1st-order perturbation theory to estimate the effects of core polarization with the (2ℏω) energy of excitation that has been carried out. Core polarization combined the model space with the discarded space (higher configuration core). Via model space, the interaction of effective (M3Y-P2) for linking the active particles of a model space with the particle-hole pair. The interaction of two bodies of Michigan 3-range Yukawa (M3Y) was used as a residual interaction for calculating the matrix elements of core polarization. Eventually, form factor theoretical results and the available experimental results were compared.   https://jih.uobaghdad.edu.iq/index.php/j/article/view/4005Electron scatteringShell modelNickel-58M3Y interaction
spellingShingle Ali A. Mohammed
Firas Z. Majeed
58Ni as an Electron Diffraction Grating with 48Ca as an Inert Core
Ibn Al-Haitham Journal for Pure and Applied Sciences
Electron scattering
Shell model
Nickel-58
M3Y interaction
title 58Ni as an Electron Diffraction Grating with 48Ca as an Inert Core
title_full 58Ni as an Electron Diffraction Grating with 48Ca as an Inert Core
title_fullStr 58Ni as an Electron Diffraction Grating with 48Ca as an Inert Core
title_full_unstemmed 58Ni as an Electron Diffraction Grating with 48Ca as an Inert Core
title_short 58Ni as an Electron Diffraction Grating with 48Ca as an Inert Core
title_sort 58ni as an electron diffraction grating with 48ca as an inert core
topic Electron scattering
Shell model
Nickel-58
M3Y interaction
url https://jih.uobaghdad.edu.iq/index.php/j/article/view/4005
work_keys_str_mv AT aliamohammed 58niasanelectrondiffractiongratingwith48caasaninertcore
AT firaszmajeed 58niasanelectrondiffractiongratingwith48caasaninertcore