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This book covers the crucial aspects of theoretical and
experimental approaches for Si-based spintronic materials. The
theory parts emphasize on two first-principles methods - the GW
method to improve the insulating gaps of the half metals which are
a class of materials ideal for spintronic applications, and the
linear response theory to calculate electric and magnetic
susceptibilities. Three growth methods for doping transition metal
elements in alloy and layered forms in Si will be focused on. Also
three methods for characterization will be presented emphasizing on
how to interpret experimental results. Finally, recent progress
made in the Si-based spintronic materials will be discussed. This
book is intended for researchers and graduate students who are
interested in designing and growing new spintronic materials, in
particular, silicon-based.
This volume provides a detailed treatment of half-metallic
materials and their properties from both an experimental and
theoretical point of view. It discusses the methods used to
understand and predict the properties of half-metals and the gamut
of other materials amenable to these techniques. It also offers an
expansive bibliography to facilitate further and deeper research.
This book provides the precise definitions of all key terminology
used in the vast and varied literature.This is the first
comprehensive monograph on the subject and will serve as a starting
point for graduate students and senior researchers who wish to
enter the field. This book will also be an invaluable reference to
those already working in the areaof half-metallic materials.
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