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Magnetic Materials, Thin Films and Nanostructures
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This volume presents eleven original and experimental research studies and review works on current challenges and trends in magnetic materials, thin films, and nanostructures, with a special focus on the design, synthesis, and characterization of various types of magnetic materials, and the study of their structure–property relationships. The developments in new experimental concepts and their state-of-the-art results, which can lead to the transfer, chemical transformation, and high-resolution patterning of advanced thin films and nanomaterials and to the design and fabrication of devices, are also presented and discussed.
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Keywords
- absorber box
- band gap
- barium hexaferrites
- bulk acoustic waves
- CdSe nanocrystalline films
- CdSe photoluminescence
- CdSe:Er
- cold compaction
- controlled magnetic texturization
- CuAlO2
- density functional theory
- electric control of magnetic phase transition
- electromagnetic compatibility (EMC)
- Electromagnetic shielding
- Electronic Packaging
- Er doping
- FePt
- FeRh
- filter design
- granular film
- grazing-incidence small-angle X-ray scattering
- ion doping
- L10 phase
- law of approach to saturation
- Li+ migration
- Magnetic properties
- Magnetic relaxation
- magnetic shape memory polymers
- magnetic shape memory polymers (MSMP)
- magnetic soft materials
- magnetic soft materials (MSMs)
- Magnetism
- magnetization
- magnetocrystalline anisotropy
- magnetotransport
- Mathematics & science
- MEMS
- microscopic model
- Mössbauer spectroscopy
- nanocomposite magnets
- nanocomposites
- nanofluid
- nanomaterials
- Nanoparticles
- Nanostructured silica
- Nanostructures
- Phase change material
- phonon energy
- Physics
- polarized neutron reflectometry
- PtMn
- Reference, information & interdisciplinary subjects
- Research & information: general
- self-polarized hexaferrites
- shape recovery
- shielding effectiveness (SE)
- single-molecule magnets
- single-molecule-magnets
- softening-hardening of phonons
- thermal management
- Thin films
- transition state search