Electrical resistivity of the kondo systems (Ce1−xREx)In3, RE = Gd, Tb, Dy AND Ce(Pt1−xNix)Si2

>Magister Scientiae - MSc === The present study investigates the strength of the hybridization by substituting Ce atom in Kondo lattice CeIn3 with Gd, Tb, and Dy and by changing the chemical environment around the Ce atom in substituting Pt with Ni in CePtSi2. This thesis covers four chapters out...

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Main Author: Tshabalala, Kamohelo George
Other Authors: Tchokonté, Moїse Bertin Tchoula
Language:en
Published: University of the Western Cape 2014
Subjects:
Online Access:http://hdl.handle.net/11394/3789
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spelling ndltd-netd.ac.za-oai-union.ndltd.org-uwc-oai-etd.uwc.ac.za-11394-37892017-08-02T04:00:39Z Electrical resistivity of the kondo systems (Ce1−xREx)In3, RE = Gd, Tb, Dy AND Ce(Pt1−xNix)Si2 Tshabalala, Kamohelo George Tchokonté, Moїse Bertin Tchoula Du Plessis, Paul De V. Cerium compounds (Ce1−xREx)In3 Kondo lattice Electrical resistivity Antiferromagnetic Quantum critical point Fermi-liquid behaviour Ce(Pt1−xNix)Si2 Crystal electric field Heavy-fermion systems >Magister Scientiae - MSc The present study investigates the strength of the hybridization by substituting Ce atom in Kondo lattice CeIn3 with Gd, Tb, and Dy and by changing the chemical environment around the Ce atom in substituting Pt with Ni in CePtSi2. This thesis covers four chapters outline as follows: Chapter 1 introduces the theoretical background in rare earths elements, and an overview of the physics of heavy-fermion and Kondo systems. Chapter 2 presents the experimental details used in this thesis. Chapter 3 report the effect of substituting Ce with moment bearing rare-earth elements RE = Gd, Tb and Dy in CeIn3, through x-ray diffraction (XRD) and electrical resistivity measurements 2014-10-22T13:23:07Z 2014-10-22T13:23:07Z 2008 Thesis http://hdl.handle.net/11394/3789 en University of the Western Cape University of the Western Cape
collection NDLTD
language en
sources NDLTD
topic Cerium compounds
(Ce1−xREx)In3
Kondo lattice
Electrical resistivity
Antiferromagnetic
Quantum critical point
Fermi-liquid behaviour
Ce(Pt1−xNix)Si2
Crystal electric field
Heavy-fermion systems
spellingShingle Cerium compounds
(Ce1−xREx)In3
Kondo lattice
Electrical resistivity
Antiferromagnetic
Quantum critical point
Fermi-liquid behaviour
Ce(Pt1−xNix)Si2
Crystal electric field
Heavy-fermion systems
Tshabalala, Kamohelo George
Electrical resistivity of the kondo systems (Ce1−xREx)In3, RE = Gd, Tb, Dy AND Ce(Pt1−xNix)Si2
description >Magister Scientiae - MSc === The present study investigates the strength of the hybridization by substituting Ce atom in Kondo lattice CeIn3 with Gd, Tb, and Dy and by changing the chemical environment around the Ce atom in substituting Pt with Ni in CePtSi2. This thesis covers four chapters outline as follows: Chapter 1 introduces the theoretical background in rare earths elements, and an overview of the physics of heavy-fermion and Kondo systems. Chapter 2 presents the experimental details used in this thesis. Chapter 3 report the effect of substituting Ce with moment bearing rare-earth elements RE = Gd, Tb and Dy in CeIn3, through x-ray diffraction (XRD) and electrical resistivity measurements
author2 Tchokonté, Moїse Bertin Tchoula
author_facet Tchokonté, Moїse Bertin Tchoula
Tshabalala, Kamohelo George
author Tshabalala, Kamohelo George
author_sort Tshabalala, Kamohelo George
title Electrical resistivity of the kondo systems (Ce1−xREx)In3, RE = Gd, Tb, Dy AND Ce(Pt1−xNix)Si2
title_short Electrical resistivity of the kondo systems (Ce1−xREx)In3, RE = Gd, Tb, Dy AND Ce(Pt1−xNix)Si2
title_full Electrical resistivity of the kondo systems (Ce1−xREx)In3, RE = Gd, Tb, Dy AND Ce(Pt1−xNix)Si2
title_fullStr Electrical resistivity of the kondo systems (Ce1−xREx)In3, RE = Gd, Tb, Dy AND Ce(Pt1−xNix)Si2
title_full_unstemmed Electrical resistivity of the kondo systems (Ce1−xREx)In3, RE = Gd, Tb, Dy AND Ce(Pt1−xNix)Si2
title_sort electrical resistivity of the kondo systems (ce1−xrex)in3, re = gd, tb, dy and ce(pt1−xnix)si2
publisher University of the Western Cape
publishDate 2014
url http://hdl.handle.net/11394/3789
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