MBE Growth of Ferromagnetic Metal/Compound Semiconductor Heterostructures for Spintronics

MBE Growth of Ferromagnetic Metal/Compound Semiconductor Heterostructures for Spintronics PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Book Description
Electrical transport and spin-dependent transport across ferromagnet/semiconductor contacts is crucial in the realization of spintronic devices. Interfacial reactions, the formation of non-magnetic interlayers, and conductivity mismatch have been attributed to low spin injection efficiency. MBE has been used to grow epitaxial ferromagnetic metal/GA(1-x)AL(x)As heterostructures with the aim of controlling the interfacial structural, electronic, and magnetic properties. In situ, STM, XPS, RHEED and LEED, and ex situ XRD, RBS, TEM, magnetotransport, and magnetic characterization have been used to develop ferromagnetic elemental and metallic compound/compound semiconductor tunneling contacts for spin injection. The efficiency of the spin polarized current injected from the ferromagnetic contact has been determined by measuring the electroluminescence polarization of the light emitted from/GA(1-x)AL(x)As light-emitting diodes as a function of applied magnetic field and temperature. Interfacial reactions during MBE growth and post-growth anneal, as well as the semiconductor device band structure, were found to have a dramatic influence on the measured spin injection, including sign reversal. Lateral spin-transport devices with epitaxial ferromagnetic metal source and drain tunnel barrier contacts have been fabricated with the demonstration of electrical detection and the bias dependence of spin-polarized electron injection and accumulation at the contacts. This talk emphasizes the progress and achievements in the epitaxial growth of a number of ferromagnetic compounds/III-V semiconductor heterostructures and the progress towards spintronic devices.

MBE Growth of Ferromagnetic Metal/Compound Semiconductor Heterostructures for Spintronics

MBE Growth of Ferromagnetic Metal/Compound Semiconductor Heterostructures for Spintronics PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Book Description
Electrical transport and spin-dependent transport across ferromagnet/semiconductor contacts is crucial in the realization of spintronic devices. Interfacial reactions, the formation of non-magnetic interlayers, and conductivity mismatch have been attributed to low spin injection efficiency. MBE has been used to grow epitaxial ferromagnetic metal/GA(1-x)AL(x)As heterostructures with the aim of controlling the interfacial structural, electronic, and magnetic properties. In situ, STM, XPS, RHEED and LEED, and ex situ XRD, RBS, TEM, magnetotransport, and magnetic characterization have been used to develop ferromagnetic elemental and metallic compound/compound semiconductor tunneling contacts for spin injection. The efficiency of the spin polarized current injected from the ferromagnetic contact has been determined by measuring the electroluminescence polarization of the light emitted from/GA(1-x)AL(x)As light-emitting diodes as a function of applied magnetic field and temperature. Interfacial reactions during MBE growth and post-growth anneal, as well as the semiconductor device band structure, were found to have a dramatic influence on the measured spin injection, including sign reversal. Lateral spin-transport devices with epitaxial ferromagnetic metal source and drain tunnel barrier contacts have been fabricated with the demonstration of electrical detection and the bias dependence of spin-polarized electron injection and accumulation at the contacts. This talk emphasizes the progress and achievements in the epitaxial growth of a number of ferromagnetic compounds/III-V semiconductor heterostructures and the progress towards spintronic devices.

Novel Compound Semiconductor Nanowires

Novel Compound Semiconductor Nanowires PDF Author: Fumitaro Ishikawa
Publisher: CRC Press
ISBN: 9814745774
Category : Science
Languages : en
Pages : 549

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Book Description
One dimensional electronic materials are expected to be key components owing to their potential applications in nanoscale electronics, optics, energy storage, and biology. Besides, compound semiconductors have been greatly developed as epitaxial growth crystal materials. Molecular beam and metalorganic vapor phase epitaxy approaches are representative techniques achieving 0D–2D quantum well, wire, and dot semiconductor III-V heterostructures with precise structural accuracy with atomic resolution. Based on the background of those epitaxial techniques, high-quality, single-crystalline III-V heterostructures have been achieved. III-V Nanowires have been proposed for the next generation of nanoscale optical and electrical devices such as nanowire light emitting diodes, lasers, photovoltaics, and transistors. Key issues for the realization of those devices involve the superior mobility and optical properties of III-V materials (i.e., nitride-, phosphide-, and arsenide-related heterostructure systems). Further, the developed epitaxial growth technique enables electronic carrier control through the formation of quantum structures and precise doping, which can be introduced into the nanowire system. The growth can extend the functions of the material systems through the introduction of elements with large miscibility gap, or, alternatively, by the formation of hybrid heterostructures between semiconductors and another material systems. This book reviews recent progresses of such novel III-V semiconductor nanowires, covering a wide range of aspects from the epitaxial growth to the device applications. Prospects of such advanced 1D structures for nanoscience and nanotechnology are also discussed.

Europium Monoxide

Europium Monoxide PDF Author: Arnold S. Borukhovich
Publisher: Springer
ISBN: 3319767410
Category : Technology & Engineering
Languages : en
Pages : 195

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Book Description
This book presents the physical characteristics and possible device applications of europium monoxide as well as materials based on it. It reveals the suitability of this material for device applications in super- and semiconductor spin electronics. Ferromagnetic semiconductors like europium monoxide have contributed to a fascinating research field in condensed matter physics. In the book are presented the electronic and magnetic properties and thermal and resonance parameters of this material, its peculiarities in external fields as a function of non-stoichiometry, doping level, both in single-crystal and thin-film states. Particular attention is paid to the possibility to use this monoxide or its solid solutions (composites) unconventionally for creating spin electronics structures which work at room temperature conditions. This book appeals to researchers, graduate students and professionals engaged in the development of semiconductor spin electronics and computer devices, technologists and theoretical physicists. It is important for the calculation, development and creation of spin memory devices for a quantum computer.

Molecular Beam Epitaxial Growth and Characterization of the Manganese-based Heusler Alloy Films for Application in Spintronics

Molecular Beam Epitaxial Growth and Characterization of the Manganese-based Heusler Alloy Films for Application in Spintronics PDF Author: Xuying Dong
Publisher:
ISBN:
Category :
Languages : en
Pages : 370

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Book Description


In-situ Surface, Chemical, and Electrical Characterization of the Interfaces Between Ferromagnetic Metals and Compound Semiconductors Grown by Molecular Beam Epitaxy

In-situ Surface, Chemical, and Electrical Characterization of the Interfaces Between Ferromagnetic Metals and Compound Semiconductors Grown by Molecular Beam Epitaxy PDF Author: Brian Douglas Schultz
Publisher:
ISBN:
Category :
Languages : en
Pages : 242

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Book Description


Oxide Spintronics

Oxide Spintronics PDF Author: Tamalika Banerjee
Publisher: CRC Press
ISBN: 0429886896
Category : Science
Languages : en
Pages : 207

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Book Description
Oxide materials have been used in mainstream semiconductor technology for several decades and have served as important components, such as gate insulators or capacitors, in integrated circuits. However, in recent decades, this material class has emerged in its own right as a potential contender for alternative technologies, generally designated as ‘beyond Moore’. The 2004 discovery by Ohtomo and Hwang was a global trendsetter in this context. It involved observing a two-dimensional, high-mobility electron gas at the heterointerface between two insulating oxides, LaAlO3 and SrTiO3, supported by the rise of nascent deposition and growth-monitoring techniques, which was an important direction in materials science research. The quest to understand the origin of this unparalleled physical property and to find other emergent properties has been an active field of research in condensed matter that has united researchers with expertise in diverse fields such as thin-film growth, defect control, advanced microscopy, semiconductor technology, computation, magnetism and electricity, spintronics, nanoscience, and nanotechnology.

Nanomagnetism and Spintronics

Nanomagnetism and Spintronics PDF Author: Fumihiro Matsukura
Publisher: Elsevier Inc. Chapters
ISBN: 0128086815
Category : Science
Languages : en
Pages : 56

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Book Description
III–V compound semiconductors such as GaAs and InAs alloyed with Mn exhibit ferromagnetism. The magnetic, electrical, and optical properties of ferromagnetic III–V semiconductors are first compiled along with the way to prepare the epitaxial films and the effect of postgrowth annealing. Theories available to explain the magnetism in these alloys are then presented. Because the ferromagnetic semiconductors are compatible with epitaxial III–V heterostructures, a number of device structures have been examined and shown to reveal a wide variety of phenomena that either cannot be realized or are very difficult to observe in ferromagnetic metal structures. The unique properties revealed by ferromagnetic semiconductor structures, ranging from reversible electric field control of ferromagnetic phase transition to generating velocity versus current-density curves of current-induced domain wall motion, are then reviewed. The prospect of realizing high-transition temperature is discussed in the last section.

Comprehensive Semiconductor Science and Technology

Comprehensive Semiconductor Science and Technology PDF Author:
Publisher: Newnes
ISBN: 0080932282
Category : Science
Languages : en
Pages : 3572

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Book Description
Semiconductors are at the heart of modern living. Almost everything we do, be it work, travel, communication, or entertainment, all depend on some feature of semiconductor technology. Comprehensive Semiconductor Science and Technology, Six Volume Set captures the breadth of this important field, and presents it in a single source to the large audience who study, make, and exploit semiconductors. Previous attempts at this achievement have been abbreviated, and have omitted important topics. Written and Edited by a truly international team of experts, this work delivers an objective yet cohesive global review of the semiconductor world. The work is divided into three sections. The first section is concerned with the fundamental physics of semiconductors, showing how the electronic features and the lattice dynamics change drastically when systems vary from bulk to a low-dimensional structure and further to a nanometer size. Throughout this section there is an emphasis on the full understanding of the underlying physics. The second section deals largely with the transformation of the conceptual framework of solid state physics into devices and systems which require the growth of extremely high purity, nearly defect-free bulk and epitaxial materials. The last section is devoted to exploitation of the knowledge described in the previous sections to highlight the spectrum of devices we see all around us. Provides a comprehensive global picture of the semiconductor world Each of the work's three sections presents a complete description of one aspect of the whole Written and Edited by a truly international team of experts

Hybrid Epitaxial Structures for Spintronics

Hybrid Epitaxial Structures for Spintronics PDF Author: J. De Boeck
Publisher:
ISBN:
Category :
Languages : en
Pages : 11

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Book Description
Molecular beam epitaxy (MBE) has been used very successfully over the past 10 years to produce the most interesting spintronic heterostructures. This paper illustrates the strength of MBE in realizing materials combinations that can lead to efficient spin-injection. The paper is not an exhaustive description of all possible materials combinations, but a review of some important aspects of spin-source fabrication. In line with today's emphasis on demonstrating the spin-injection process in III-V (electroluminescent) semiconductor devices, the paper will focus on Gallium Arsenide-based (GaAs-based) epitaxial heterostructures. The first part of the paper describes the epitaxy of metallic ferromagnetic elements and alloys on GaAs. The authors review the results of initial experiments on Iron (Fe) and Cobalt (Co) epitaxy, since these materials are in the picture for Schottky barrier spin-injection devices today. Further, a brief description of Manganese-based (Mn) alloys is presented, justified by the wealth of possible Mn-III or Mn-V alloys that can be epitaxially grown on GaAs with various properties. This section is followed by a discussion of Gallium Manganese Arsenide (GaMnAs) as a ferromagnetic semiconductor and a summary of the results obtained recently on the epitaxial growth of Nickel Manganese Antimony (NiMnSb) on GaAs, a half-metallic magnetic alloy that has the potential to serve as a spin-source with 100% spin-polarization. The authors also briefly discuss some results on the realization of heterostructures, including two magnetic layers spaced by a semiconductor or vice versa. A very appealing class of materials for spintronics is that of magnetic semiconductors, illustrated in this paper by (Aluminum, Gallium) Manganese Arsenides (Al, Ga)MnAs. A concluding section deals with the contact strategies (ohmic, Schottky barrier, or tunnel barrier) for spin-injection reports in which the materials combinations play an important role. (9 figures, 94 refs.).

Nanomagnetism and Spintronics

Nanomagnetism and Spintronics PDF Author: Teruya Shinjo
Publisher: Elsevier
ISBN: 0444632778
Category : Science
Languages : en
Pages : 373

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Book Description
The concise and accessible chapters of Nanomagnetism and Spintronics, Second Edition, cover the most recent research in areas of spin-current generation, spin-calorimetric effect, voltage effects on magnetic properties, spin-injection phenomena, giant magnetoresistance (GMR), and tunnel magnetoresistance (TMR). Spintronics is a cutting-edge area in the field of magnetism that studies the interplay of magnetism and transport phenomena, demonstrating how electrons not only have charge but also spin. This second edition provides the background to understand this novel physical phenomenon and focuses on the most recent developments and research relating to spintronics. This exciting new edition is an essential resource for graduate students, researchers, and professionals in industry who want to understand the concepts of spintronics, and keep up with recent research, all in one volume. - Provides a concise, thorough evaluation of current research - Surveys the important findings up to 2012 - Examines the future of devices and the importance of spin current