Hall effect

Magnetic and Magnetotransport Properties of Nanostructured Magnetic Materials

Engineering / Materials Engineering / Mechanical Engineering / Condensed Matter Physics / Applied Physics / Magnetic field / Molecular beam epitaxy / Nanocrystalline Material / Transport Properties / Mathematical Sciences / Thin Film / Mechanical Alloying / Physical sciences / Magnetic Domains / Spin Glass / Curie temperature / Single Crystal / Magnetism and Magnetic Materials / Magnetic Anisotropy / Low Temperature / Hall effect / Magnetic Resonance Coupling / Electrical And Electronic Engineering / High energy / Magnetic field / Molecular beam epitaxy / Nanocrystalline Material / Transport Properties / Mathematical Sciences / Thin Film / Mechanical Alloying / Physical sciences / Magnetic Domains / Spin Glass / Curie temperature / Single Crystal / Magnetism and Magnetic Materials / Magnetic Anisotropy / Low Temperature / Hall effect / Magnetic Resonance Coupling / Electrical And Electronic Engineering / High energy

Magnetic and Magnetotransport Properties of Nanostructured Magnetic Materials

Engineering / Materials Engineering / Mechanical Engineering / Condensed Matter Physics / Applied Physics / Magnetic field / Molecular beam epitaxy / Nanocrystalline Material / Transport Properties / Mathematical Sciences / Thin Film / Mechanical Alloying / Physical sciences / Magnetic Domains / Spin Glass / Curie temperature / Single Crystal / Magnetism and Magnetic Materials / Magnetic Anisotropy / Low Temperature / Hall effect / Magnetic Resonance Coupling / Electrical And Electronic Engineering / High energy / Magnetic field / Molecular beam epitaxy / Nanocrystalline Material / Transport Properties / Mathematical Sciences / Thin Film / Mechanical Alloying / Physical sciences / Magnetic Domains / Spin Glass / Curie temperature / Single Crystal / Magnetism and Magnetic Materials / Magnetic Anisotropy / Low Temperature / Hall effect / Magnetic Resonance Coupling / Electrical And Electronic Engineering / High energy

Magnetic and Magnetotransport Properties of Nanostructured Magnetic Materials

Engineering / Materials Engineering / Mechanical Engineering / Condensed Matter Physics / Applied Physics / Magnetic field / Molecular beam epitaxy / Nanocrystalline Material / Transport Properties / Mathematical Sciences / Thin Film / Mechanical Alloying / Physical sciences / Magnetic Domains / Spin Glass / Curie temperature / Single Crystal / Magnetism and Magnetic Materials / Magnetic Anisotropy / Low Temperature / Hall effect / Magnetic Resonance Coupling / Electrical And Electronic Engineering / High energy / Magnetic field / Molecular beam epitaxy / Nanocrystalline Material / Transport Properties / Mathematical Sciences / Thin Film / Mechanical Alloying / Physical sciences / Magnetic Domains / Spin Glass / Curie temperature / Single Crystal / Magnetism and Magnetic Materials / Magnetic Anisotropy / Low Temperature / Hall effect / Magnetic Resonance Coupling / Electrical And Electronic Engineering / High energy

Magnetic and Magnetotransport Properties of Nanostructured Magnetic Materials

Engineering / Materials Engineering / Mechanical Engineering / Condensed Matter Physics / Applied Physics / Magnetic field / Molecular beam epitaxy / Nanocrystalline Material / Transport Properties / Mathematical Sciences / Thin Film / Mechanical Alloying / Physical sciences / Magnetic Domains / Spin Glass / Curie temperature / Single Crystal / Magnetism and Magnetic Materials / Magnetic Anisotropy / Low Temperature / Hall effect / Magnetic Resonance Coupling / Electrical And Electronic Engineering / High energy / Magnetic field / Molecular beam epitaxy / Nanocrystalline Material / Transport Properties / Mathematical Sciences / Thin Film / Mechanical Alloying / Physical sciences / Magnetic Domains / Spin Glass / Curie temperature / Single Crystal / Magnetism and Magnetic Materials / Magnetic Anisotropy / Low Temperature / Hall effect / Magnetic Resonance Coupling / Electrical And Electronic Engineering / High energy

Magnetotransport properties of ferromagnetic LaMnO3+δ nano-sized crystals

Engineering / Mechanical Engineering / Condensed Matter Physics / Applied Physics / Mathematical Sciences / Mott metal-insulator transition / Physical sciences / Magnetic Properties / Activation Energy / Temperature Dependence / Superlattice / Anomalous Hall effect / Curie temperature / Grain Boundary / Magnetoresistance / Effective mass / Magnetism and Magnetic Materials / Low Temperature / Hall effect / Mott metal-insulator transition / Physical sciences / Magnetic Properties / Activation Energy / Temperature Dependence / Superlattice / Anomalous Hall effect / Curie temperature / Grain Boundary / Magnetoresistance / Effective mass / Magnetism and Magnetic Materials / Low Temperature / Hall effect

Magnetotransport properties of ferromagnetic LaMnO 3+ δ nano-sized crystals

Engineering / Mechanical Engineering / Condensed Matter Physics / Applied Physics / Mathematical Sciences / Mott metal-insulator transition / Physical sciences / Magnetic Properties / Activation Energy / Temperature Dependence / Superlattice / Anomalous Hall effect / Curie temperature / Grain Boundary / Magnetoresistance / Effective mass / Magnetism and Magnetic Materials / Low Temperature / Hall effect / Mott metal-insulator transition / Physical sciences / Magnetic Properties / Activation Energy / Temperature Dependence / Superlattice / Anomalous Hall effect / Curie temperature / Grain Boundary / Magnetoresistance / Effective mass / Magnetism and Magnetic Materials / Low Temperature / Hall effect

Ballistic composite fermions in semiconductor nanostructures

Electron Transport / Charge Transport / Hall effect

Propiedades magn´ eticas y de transporte de sistemas nanocristalinos: conceptos b´ asicos y aplicaciones a sistemas reales

Giant Magnetoresistance / Transport Properties / Mathematical Sciences / Physical sciences / Superparamagnetism / Hall effect
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