Magneto-transport and thermal properties of the Yukawa potential in cosmic string space-time

Yukawa potential has garnered remarkable attention since its proposition. It is applied in condensed matter physics, plasma physics, high energy physics and related areas. Based on this widespread applicability, this study focused on the analysis of the effects of topological defect on the thermal a...

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Main Authors: C.O. Edet, P.O. Nwbabuzor, E.B. Ettah, C.A. Duque, N. Ali, A.N. Ikot, S. Mahmoud, M. Asjad
Format: Article
Language:English
Published: Elsevier 2022-08-01
Series:Results in Physics
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2211379722004211
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author C.O. Edet
P.O. Nwbabuzor
E.B. Ettah
C.A. Duque
N. Ali
A.N. Ikot
S. Mahmoud
M. Asjad
author_facet C.O. Edet
P.O. Nwbabuzor
E.B. Ettah
C.A. Duque
N. Ali
A.N. Ikot
S. Mahmoud
M. Asjad
author_sort C.O. Edet
collection DOAJ
description Yukawa potential has garnered remarkable attention since its proposition. It is applied in condensed matter physics, plasma physics, high energy physics and related areas. Based on this widespread applicability, this study focused on the analysis of the effects of topological defect on the thermal and magnetic properties of this system. Non-relativistic treatment of this potential in the presence of magnetic fields and Aharonov–Bohm is performed using the functional analytical approach (FAA). The energy equation and the wavefunction are analytically derived. The accessible energy levels are summed up to obtain to get the partition function that is used to derive the expressions for the thermo-magnetic properties of the Yukawa potential. These properties are analysed in detail by means of graphical representations. It is observed that in the various settings of the analysis, the system has a diamagnetic characteristic and the behaviour of the heat capacity is in accordance with the recognized law of Dulong–Petit, although some anomalies are observed. This irregular behaviour could be attributed to Schottky anomaly. The results of our research will be helpful in many fields of physics: condensed matter physics, high energy physics, etc.
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spelling doaj.art-c19b02492d8a420895034b5dc24515bb2022-12-22T02:11:50ZengElsevierResults in Physics2211-37972022-08-0139105749Magneto-transport and thermal properties of the Yukawa potential in cosmic string space-timeC.O. Edet0P.O. Nwbabuzor1E.B. Ettah2C.A. Duque3N. Ali4A.N. Ikot5S. Mahmoud6M. Asjad7Faculty of Electronic Engineering Technology, Universiti Malaysia Perlis, Malaysia; Department of Physics, Cross River University of Technology, Calabar, Nigeria; Corresponding author at: Faculty of Electronic Engineering Technology, Universiti Malaysia Perlis, Malaysia.Physics Production Technology, School of Science Laboratory Technology, University of Port Harcourt, Choba PMB 5323, Rivers State, NigeriaDepartment of Physics, Cross River University of Technology, Calabar, NigeriaGrupo de Materia Condensada-UdeA, Instituto de Fisica, Facultad de Ciencias Exactas y Naturales, Universidad de Antioquia UdeA, Calle 70 No. 52-21, Medellin, ColombiaFaculty of Electronic Engineering Technology, Universiti Malaysia Perlis, Malaysia; Corresponding authors.Theoretical Physics Group, Department of Physics, University of Port Harcourt, East/West Road, PMB 5323 Choba, Rivers State, NigeriaPlatform for Research and Analysis in Environmental Sciences (PRASE), Lebanese University, Elhadath, Beirut, LebanonDepartment of Mathematics, Khalifa University, Abu Dhabi 127788, United Arab Emirates; Corresponding authors.Yukawa potential has garnered remarkable attention since its proposition. It is applied in condensed matter physics, plasma physics, high energy physics and related areas. Based on this widespread applicability, this study focused on the analysis of the effects of topological defect on the thermal and magnetic properties of this system. Non-relativistic treatment of this potential in the presence of magnetic fields and Aharonov–Bohm is performed using the functional analytical approach (FAA). The energy equation and the wavefunction are analytically derived. The accessible energy levels are summed up to obtain to get the partition function that is used to derive the expressions for the thermo-magnetic properties of the Yukawa potential. These properties are analysed in detail by means of graphical representations. It is observed that in the various settings of the analysis, the system has a diamagnetic characteristic and the behaviour of the heat capacity is in accordance with the recognized law of Dulong–Petit, although some anomalies are observed. This irregular behaviour could be attributed to Schottky anomaly. The results of our research will be helpful in many fields of physics: condensed matter physics, high energy physics, etc.http://www.sciencedirect.com/science/article/pii/S2211379722004211Schrodinger equationYukawa potentialAharonov–Bohm fieldTopological defect
spellingShingle C.O. Edet
P.O. Nwbabuzor
E.B. Ettah
C.A. Duque
N. Ali
A.N. Ikot
S. Mahmoud
M. Asjad
Magneto-transport and thermal properties of the Yukawa potential in cosmic string space-time
Results in Physics
Schrodinger equation
Yukawa potential
Aharonov–Bohm field
Topological defect
title Magneto-transport and thermal properties of the Yukawa potential in cosmic string space-time
title_full Magneto-transport and thermal properties of the Yukawa potential in cosmic string space-time
title_fullStr Magneto-transport and thermal properties of the Yukawa potential in cosmic string space-time
title_full_unstemmed Magneto-transport and thermal properties of the Yukawa potential in cosmic string space-time
title_short Magneto-transport and thermal properties of the Yukawa potential in cosmic string space-time
title_sort magneto transport and thermal properties of the yukawa potential in cosmic string space time
topic Schrodinger equation
Yukawa potential
Aharonov–Bohm field
Topological defect
url http://www.sciencedirect.com/science/article/pii/S2211379722004211
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