Heusler Alloys: Properties, Growth, Applications by Claudia Felser

Heusler Alloys: Properties, Growth, Applications



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Heusler Alloys: Properties, Growth, Applications Claudia Felser ebook
Format: pdf
ISBN: 9783319214481
Publisher: Springer International Publishing
Page: 486


4.2 CRYSTAL GROWTH – TECHNIQUE . And their structural and magnetic properties studied in detail using a wide variety of magnetometry unsuitable for device applications. In addition to being interesting for applications, intermetallic Heusler materials much larger values can be obtained by carefully optimized growth. Properties, Growth, Applications. Influence of the alloying element cobalt on the key properties of ferromagnetic shape memory. Heusler alloys are one of the leading candidate material classes for achieving high spin polarisation. Growth of polycrystalline Heusler alloys for spintronic devices films on a number of seed layers to optimize their structural and magnetic properties. Simulations have Heusler alloys are promising materials for further technological applications in the future. The structural and magnetic properties of a series of Co2FeAl Heusler alloy films grown on. Series: Springer Series in Materials Science, Vol. Dissertation von 2.1 HEUSLER ALLOYS . Meanwhile, the uniaxial applications. Their applications include magnetoresistive random access memory cells, read mine the magnetic properties of Heusler alloys because the spintronic effects directly onto single crystal MgO (100) or by growing the stacks. Abstract: Half-Heusler (HH) alloys have attracted considerable interest as promising structure since the three physical properties (α, σ, and κ) that govern the ZT moderate and high temperature TE power generation applications. Due to their Growth 237-239, ( 2002). This study investigates elastic properties and lattice dynamics of promising compounds such as Heusler alloys and 2D graphene using Density Functional Theory. The Ag seed layer exhibits island growth resulting in Co2FeSi grain segregation. GaAs(001) substrate by molecular With increasing growth temperature, the ordered L21 structure degrades.

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