Electrical characterization of manganite and titanate heterostructures

Electrical characterization of manganite and titanate heterostructures
Title Electrical characterization of manganite and titanate heterostructures PDF eBook
Author Anja Herpers
Publisher Forschungszentrum Jülich
Pages 183
Release 2014-03-28
Genre
ISBN 3893369481

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Resistive switching in ZrO2 based metal-oxide-metal structures

Resistive switching in ZrO2 based metal-oxide-metal structures
Title Resistive switching in ZrO2 based metal-oxide-metal structures PDF eBook
Author Irina Kärkkänen
Publisher Forschungszentrum Jülich
Pages 151
Release 2014
Genre
ISBN 3893369716

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Oxygen transport in thin oxide films at high field strength

Oxygen transport in thin oxide films at high field strength
Title Oxygen transport in thin oxide films at high field strength PDF eBook
Author Dieter Weber
Publisher Forschungszentrum Jülich
Pages 141
Release 2014
Genre
ISBN 3893369503

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Ionic transport in nanostructures at high eld strength has recently gained attention, because novel types of computer memory with potentially superior properties rely on such phenomena. The applied voltages are only moderate, but they drop over the distance of a few nanometers and lead to extreme eld strengths in the MV/cm region. Such strong elds contributes signi cantly to the activation energy for ionic jump processes. This leads to an exponential increase of transport speed with voltage. Conventional high-temperature ionic conduction, in contrast, only relies on thermal activation for such jumps. In this thesis, the transport of minute amounts of oxygen through a thin dielectric layer sandwiched between two thin conducting oxide electrodes was detected semiquantitatively by measuring the conductance change of the electrodes after applying a current through the dielectric layer. The relative conductance change G=G as a function of current I and duration t follows over several orders of magnitude a simple, empirical law of the form G=G = CIAtB with t parameters C, A and B; A;B 2 [0; 1]. This empirical law can be linked to a predicted exponential increase of the transport speed with voltage at high eld strength. The behavior in the time domain can be explained with a spectrum of relaxation processes, similar to the relaxation of dielectrics. The in uence of temperature on the transport is strong, but still much lower than expected. This contradicts a commonly used law for high- eld ionic transport. The di erent oxide layers are epitaxial with thicknesses between 5 and 70 nm. First large-scale test samples were fabricated using shadow masks. The general behavior of such devices was studied extensively. In an attempt to achieve quantitative results with defect-free, miniaturized devices, a lithographic manufacturing process that uses repeated steps of epitaxial deposition and structuring of the layers was developed. It employs newly developed and optimized wet chemical etching processes for the conducting electrodes. First high-quality devices could be manufactured with this process and con rmed that such devices su er less from parasitic e ects. The lithographically structured samples were made from di erent materials. The results from the rst test samples and the lithographically structured samples are therefore not directly comparable. They do exhibit however in principle the same behavior. Further investigation of such lithographically structured samples appears promising

Micro-spectroscopic investigation of valence change processes in resistive switching SrTiO3 thin films

Micro-spectroscopic investigation of valence change processes in resistive switching SrTiO3 thin films
Title Micro-spectroscopic investigation of valence change processes in resistive switching SrTiO3 thin films PDF eBook
Author Annemarie Köhl
Publisher Forschungszentrum Jülich
Pages 181
Release 2014
Genre
ISBN 3893369880

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Comprehensive Semiconductor Science and Technology

Comprehensive Semiconductor Science and Technology
Title Comprehensive Semiconductor Science and Technology PDF eBook
Author
Publisher Newnes
Pages 3572
Release 2011-01-28
Genre Science
ISBN 0080932282

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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

Multiferroic Materials

Multiferroic Materials
Title Multiferroic Materials PDF eBook
Author Junling Wang
Publisher CRC Press
Pages 374
Release 2016-10-14
Genre Science
ISBN 1315355264

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"a very detailed book on multiferroics that will be useful for PhD students and researchers interested in this emerging field of materials science" —Dr. Wilfrid Prellier, Research Director, CNRS, Caen, France Multiferroics has emerged as one of the hottest topics in solid state physics in this millennium. The coexistence of multiple ferroic/antiferroic properties makes them useful both for fundamental studies and practical applications such as revolutionary new memory technologies and next-generation spintronics devices. This book provides an historical introduction to the field, followed by a summary of recent progress in single-phase multiferroics (type-I and type-II), multiferroic composites (bulk and nano composites), and emerging areas such as domain walls and vortices. Each chapter addresses potential technological implications. There is also a section dedicated to theoretical approaches, both phenomenological and first-principles calculations.

Ceramic Abstracts

Ceramic Abstracts
Title Ceramic Abstracts PDF eBook
Author
Publisher
Pages 1040
Release 1998
Genre Ceramics
ISBN

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