Study of Symmetric Nuclear Matter Properties in Non-linear Walecka Model via Relativistic Mean-field approximation at zero-temperature
DOI:
https://doi.org/10.4314/symadg06Keywords:
Symmetric nuclear matter, Lagrangian density, non-linear-Walecka model, relativistic mean field theory, equation of state, zero-temperature.Abstract
Symmetric nuclear matter at zero temperature were analysed. The equations of state (EOS) of symmetric nuclear matter were studied in the non-linear Walecka models at different parameterizations. At normal nucleon density, strong correlations were observed among the different parameter sets, however the linear Walecka model gives values of nucleon effective mass and nuclear incompressibility ) at variance to the experimental values.The calculated values of saturation density ranges from 0.143 fm-3 to 0.152 fm-3 , nucleon effective mass 0.132 MeV to 0.157 MeV, binding energy per nucleon -16.01 MeV to -16.20 MeV, compression modulus 223.55 MeV to 271.36 MeV, and fermi-wavelength 1.30 fm-1 to 1.31 fm-1 for the non- linear Walecka model (NLWM). The results of the numerical computations were compared with the empirical analysis of the giant iso-scalar monopole resonance data. These quantities are important for understanding the structure of finite nuclei and neutron stars. The quantities have substantially described equation of state of other dense matter in astrophysical contexts.
Downloads
Published
Issue
Section
Similar Articles
- Yakubu Isa, Radiya Muhammad Said, Juliet Wallen Piapna, Abdulhaq Bashir, Development and Applications of the Type II Half-Logistic Inverse Weibull Distribution , Communication In Physical Sciences: Vol. 11 No. 4 (2024): VOLUME 11 ISSUE 4
- Samson Osinachi Nwadibia, Henry Patrick Obong, Ephraim Okechukwu Chukwuocha, Analytical Solutions of the Schrodinger Equation with q-Deformed Modified Mobius Square Potential Using the Nikiforov-Uvarov Method , Communication In Physical Sciences: Vol. 9 No. 4 (2023): VOLUME 9 ISSUE 4
- Yomi B. Gideon, Felix B. Fatoye, Geology, Petrography and Geochemical Evaluation of Basement Rocks In Bakomba–Kabba Junction Area, Sheet 247 Lokoja SW, North Central, Nigeria , Communication In Physical Sciences: Vol. 11 No. 1 (2024): VOLUME 11 ISSUE 1
- Aaron Enechojo Auduson, Abdullahi Emmanuel Bala, Kizito Ojochenemi Musa,, Mary Melemu Shaibu, Michael Adewale Ibitomi, Ijeoma Milicent Agbo-Okiyi, Baba Aminu Muawiya, Fabian Apeh Akpah, Philomina Okanigbuan, Ifeanyi Obihan, Integrated Geoscientific Techniques for Water Resource Potential: A Case Study of Felele Campus, Federal University Lokoja , Communication In Physical Sciences: Vol. 12 No. 2 (2025): VOLUME 12 ISSUE 2
- Ola-Buraimo Abdulrazaq Olatunji, Umar Hamida, Geochemical Properties of Kalambaina Formation: Implication on Limestone and Marlstone Qualities for Industrial Uses, Sokoto Basin, Nigeria , Communication In Physical Sciences: Vol. 11 No. 4 (2024): VOLUME 11 ISSUE 4
- Ikimi, Charles German, Umeoguaju, Francis Uchenna, Ononamadu, Chimaobi James, Exploration of Vitreous Biochemical Markers for Postmortem Discrimination of Carbon Monoxide Toxicity: Insights from Animal Model , Communication In Physical Sciences: Vol. 11 No. 4 (2024): VOLUME 11 ISSUE 4
- Olawale Babatunde Olatinsu, Mathew Osaretin Ogieva, Amidu Abiola Ige-Adeyeye, Investigation of Frequency-dependent Conductivity Signatures of Geological Materials from Ewekoro, Eastern Dahomey Basin , Communication In Physical Sciences: Vol. 12 No. 2 (2025): VOLUME 12 ISSUE 2
- Anduang Ofuo Odiongenyi, Removal of Ethyl Violet Dye from Aqueous Solution by Graphite Dust and Nano Graphene Oxide Synthesized from Graphite Dust , Communication In Physical Sciences: Vol. 4 No. 1 & 2 (2019): VOLUME FOUR(ISSUE 1&2)
- Akaezue Nelson Nwagbogwu, Ngiangia Alalibor Thompson, Onyeaju Michael Chukwudi, Thermal Properties of Diffusing Species into Some Host Metals , Communication In Physical Sciences: Vol. 11 No. 4 (2024): VOLUME 11 ISSUE 4
- Maxwell O. Akpu, Nnanna A. Lebe, Nwamaka I. Akpu, Lattice Instability in metallic elements: A Review , Communication In Physical Sciences: Vol. 12 No. 2 (2025): VOLUME 12 ISSUE 2
You may also start an advanced similarity search for this article.