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Semimagnetic Semiconductors and Diluted Magnetic Semiconductors

Semimagnetic Semiconductors and Diluted Magnetic Semiconductors
Author: M. Averous
Publisher: Springer Science & Business Media
Total Pages: 278
Release: 2012-12-06
Genre: Science
ISBN: 1461537762

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Semimagnetic semiconductors (SMSC) and diluted magnetic semiconductors (DMS) have in the past decade attracted considerable attention because they confer many new physical properties on both bulk materials and heterostructures. These new effects are due either to exchange interactions between magnetic moments on magnetic ions, or to exchange interactions between magnetic moments and the spin of the charge carrier. These effects vary with the transition metal (Mn, Fe, Co) or rare earth (Eu, Gd, etc) used and thus provide a range of different situations. The field is very large (zero gap, small gap, wide gap), and the magnetic properties also are very rich (paramagnetic spin glass, antiferromagnetism). These materials are very convenient for studying the magnetism (the magnetism is diluted) or the superlattices (SL) with a continuous change from type II SL to type III SL. This Course attempted to provide a complete overview of the topic. The participants of this summer school held in Erice came from ten countries and were from various backgrounds and included theoreticians, experimentalists, physicists, and chemists. Consequently, an attempt was made to make the Course as thorough as possible, but at the same time attention was devoted to basic principles. The lecturers, drawn from all the groups in the world involved in the field, were asked to be very didactic in their presentation. After two introductory lectures, Dr.


Diluted Magnetic Semiconductors

Diluted Magnetic Semiconductors
Author: Mukesh Kumar Jain
Publisher: World Scientific
Total Pages: 682
Release: 1991
Genre: Technology & Engineering
ISBN: 9789810201760

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This review volume presents both basic and applied aspects of diluted magnetic semiconductors (DMS). The term DMS applies generally to semiconductors in which a fraction of its constituent ions are replaced by magnetic ions. This book is only the second to review DMS materials. It presents a detailed treatment of the current state of knowledge of the established properties of DMS in the form of single crystals, quantum wells and superlattices. It also brings together recent work on new DMS materials and presents discussions on a wide range of possible DMS applications.


Introduction to the Physics of Diluted Magnetic Semiconductors

Introduction to the Physics of Diluted Magnetic Semiconductors
Author: Jan A. Gaj
Publisher: Springer Science & Business Media
Total Pages: 484
Release: 2011-01-12
Genre: Science
ISBN: 3642158560

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As materials whose semiconducting properties are influenced by magnetic ions, DMSs are central to the emerging field of spintronics. This volume focuses both on basic physical mechanisms (e.g. carrier-ion and ion-ion interactions), and resulting phenomena.


Diluted Magnetic (Semimagnetic) Semiconductors. Materials Research Society Smposia Proceedings

Diluted Magnetic (Semimagnetic) Semiconductors. Materials Research Society Smposia Proceedings
Author:
Publisher:
Total Pages: 320
Release: 1987
Genre:
ISBN:

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A three-day symposium on "Diluted Magnetic (Semimagnetic) Semiconductors" was held as part of the Fall Meeting of the Materials Research Society in Boston, MA, December 1-3, 1986. Two of the six sessions of this symposium were held jointly with the symposium on Materials for Infrared Detectors and Sources. This was the first symposium on semimagnetic semiconductors held in the United States, indicating the growing interest in this field among U.S. scientists. The symposium included participants from Austria, Canada, Finland, France, Germany, The Netherlands, Poland, and the United States. Approximately 50 papers were presented, with two-thirds given by U.S. scientists. Topics included: optical properties and spin-spin exchange interactions; magnetic properties of Mn-alloyed II-VI compounds; theory, structure, and transport; lead salts, Fe alloys, new DMS materials; frontiers of materials science in IR/DMS materials; and lR/DMS materials for IR detectors and sources. jg p.14.


Diluted Magnetic Semiconductors

Diluted Magnetic Semiconductors
Author: Mukesh Jain
Publisher: World Scientific
Total Pages: 677
Release: 1991-10-31
Genre: Science
ISBN: 9814506990

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This review volume presents both basic and applied aspects of diluted magnetic semiconductors (DMS). The term DMS applies generally to semiconductors in which a fraction of its constituent ions are replaced by magnetic ions. This book is only the second to review DMS materials. It presents a detailed treatment of the current state of knowledge of the established properties of DMS in the form of single crystals, quantum wells and superlattices. It also brings together recent work on new DMS materials and presents discussions on a wide range of possible DMS applications.


Magnetization Dynamics in Diluted Magnetic Semiconductor Heterostructures

Magnetization Dynamics in Diluted Magnetic Semiconductor Heterostructures
Author: Martin Kneip
Publisher: GRIN Verlag
Total Pages: 282
Release: 2009-02
Genre: Science
ISBN: 364026830X

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Doctoral Thesis / Dissertation from the year 2008 in the subject Physics - Theoretical Physics, grade: sehr gut (1,0), University of Dortmund, 550 entries in the bibliography, language: English, abstract: In this thesis spin dynamics in (Zn, Mn)Se/(Zn, Be)Se and (Cd, Mn)Te/(Cd, Mg)Te DMS quantum well heterostructures with a type-I band alignment are studied, where the carriers are quantum confined. Especially the important role of free carriers in heating of the Mn-system, by its interaction with photoexcited carriers with excess kinetic energy, and in the cooling of the Mn-system in the presence of cold background carriers, provided by modulation doping, is established. The studies are separated in three chapters. In the fourth chapter of this thesis, new results on energy and spin transfer between free carriers and Mn-ion system are presented. Contributions of direct heating of the Mn-system by photocarriers and indirect heating via nonequilibrium phonons are distinguished and their competition is discussed. In the fifth chapter dynamics of spin-lattice relaxation of magnetic Mn-ions in DMS QW heterostructures is investigated and new experimental studies on (Zn, Mn)Se/(Zn, Be)Se heterostructures are shown. Crucial for spintronic devices is the ability to tune the spin relaxation time precisely, as the spin relaxation time is important in double respects. On the one hand spin polarization must be conserved over long times and distances, if the spin shall be processed or stored in a region, which is spatial separated from the spin-injector. Especially for the possibility of utilizing spins as quantum bits for quantum information processing, long spin polarization is needed. On the other hand short spin relaxation time is needed for fast switching between different spin-states. For instance semiconductor lasers can be switched off extremely fast by reorientation of spin. This very relevant topic is devoted the sixth chapter, before the thesis is summarized in the las


First-Principle Vs Experimental Design of Diluted Magnetic Semiconductors

First-Principle Vs Experimental Design of Diluted Magnetic Semiconductors
Author: Omar Mounkachi
Publisher: Nova Science Publishers
Total Pages: 177
Release: 2018-10
Genre: Diluted magnetic semiconductors
ISBN: 9781536140774

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Recent discoveries have given rise to a new class of electronics known as "spin electronics or spintronics," which uses the electron spin rather than its charge to create polarized currents. Spintronics is currently experiencing an extraordinary development with the manufacture of nanoscale devices based on ferromagnetic materials and semiconductors. Their applications are numerous, ranging from recording, electronics, and optoelectronics to quantum information. Spintronics is a new generation of electronics that has brought and continues to bring a lot of progress to information storage; this is due to the discovery of new materials with new functionalities and multiple applications. The discovery of giant magnetoresistance (GMR) in 1988 by Albert Fert and Peter Grünberg (receiver of the Nobel Prize in Physics in 2007) is considered a starting point of spintronics. GMR is based on the variation of the electric current in the presence of a magnetic field. The spintronics has made important contributions to the miniaturization desired for electronics; it uses nanometric components for processing and storing information. However, the limits of miniaturization on a nanometric scale are known, and it is imperative to develop new ways and new materials to exceed those limits. The most desired properties for these materials are high spin polarization, modular magnetic properties by an electric field and a long lifetime of the spin polarization. Among the new promising materials, we cite the following: Diluted magnetic semiconductors, which give new magnetic properties of conventional semiconductors, functional oxides (including the semi-metals and multiferroic metals) and organic semiconductors. The main theoretical challenge in this area is to understand how the macroscopic magnetic behavior observed results from interactions of a large number of degrees of microscopic freedom. In these systems the disorder is an essential parameter of magnetic phenomena, and due to random locations of impurity atoms it can lead to a total physical difference from the observed absence. There has been considerable recent advances in the design of these materials as diluted magnetic semiconductors (DMS, or diluted magnetic semiconductors), and a number of semiconductors were investigated as II-VI group and III-V group doped compounds, with transition metals substituting their original cations. There are several different theoretical approaches to study these magnetic materials. The ab-initio approach starts from the Schrödinger equation to simulate a given material. Such an approach is essential to determine the parameters and microscopic properties of such a system. In this book, the authors analyzed the electronic structure of magnetic semiconductors diluted in the case of ZnO, GaN, SnO2, TiO2, MgH2, EuO and EuN doped RENs (RE=GdN, DyN and HoN). The authors focused on magnetic, optical and exchange mechanisms which control the ferromagnetism in these systems. The purpose of this book is to propose some ideas to answer the most important question in material science for semiconductor spintronics, primarily considering how room-temperature ferromagnetism in DMS can be realized. Additionally, the correlation between first principle and experimental design to see how properties of yet-to-be-synthesized materials can be predicted is discussed.


The Physics of Semiconductors

The Physics of Semiconductors
Author: Marius Grundmann
Publisher: Springer Nature
Total Pages: 905
Release: 2021-03-06
Genre: Technology & Engineering
ISBN: 3030515699

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The 4th edition of this highly successful textbook features copious material for a complete upper-level undergraduate or graduate course, guiding readers to the point where they can choose a specialized topic and begin supervised research. The textbook provides an integrated approach beginning from the essential principles of solid-state and semiconductor physics to their use in various classic and modern semiconductor devices for applications in electronics and photonics. The text highlights many practical aspects of semiconductors: alloys, strain, heterostructures, nanostructures, amorphous semiconductors, and noise, which are essential aspects of modern semiconductor research but often omitted in other textbooks. This textbook also covers advanced topics, such as Bragg mirrors, resonators, polarized and magnetic semiconductors, nanowires, quantum dots, multi-junction solar cells, thin film transistors, and transparent conductive oxides. The 4th edition includes many updates and chapters on 2D materials and aspects of topology. The text derives explicit formulas for many results to facilitate a better understanding of the topics. Having evolved from a highly regarded two-semester course on the topic, The Physics of Semiconductors requires little or no prior knowledge of solid-state physics. More than 2100 references guide the reader to historic and current literature including original papers, review articles and topical books, providing a go-to point of reference for experienced researchers as well.


II-VI Compounds and Semimagnetic Semiconductors

II-VI Compounds and Semimagnetic Semiconductors
Author: H. Heinrich
Publisher: Trans Tech Publications Ltd
Total Pages: 830
Release: 1995-02-09
Genre: Technology & Engineering
ISBN: 3035704945

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The main emphasis of this volume is on the fundamental physics of the II-VI compounds focusing on the properties of epitaxial layers, heterostructures, multilayers and superlattices.