Strongly Correlated Electron Systems
  1. Heavy fermions and Kondo insulators
  2. Quantum phase transitions
  3. Unconventional superconductivity
  4. Metal-insulator transitions
  5. Strongly correlated semiconductors and insulators
  6. Low dimensionality, disorder and correlation in quantum systems
  7. Itinerant magnetism

Dynamics and Statical Mechanics
  1. Spin waves
  2. Dynamic phenomena
  3. Solitons and non-linear effects
  4. Frustrated phase separation and critical phenomena
  5. Long-range interactions
  6. Disordered and frustrated systems: spin glasses and dilute magnetic systems
  7. Low dimensionality quantum magnets
  8. Magnetic coherence
  9. Statistical mechanics of model systems

Spin Glasses, Random Magnets, Disordered Magnetism
  1. Spin glasses
  2. Random systems
  3. Amorphous materials

Spin Electronics and Magneto-Transport
  1. Enhanced magneto-resistance (GMR and CMR)
  2. Magneto-impedance
  3. Hybrid memories and MRAMS
  4. Spin valves
  5. Magnetic tunnelling junctions
  6. Magnetic semiconductors
  7. Semiconductor spintronics
  8. Transport in dilute and disordered systems
  9. Superconductivity



Magnetic Structure and Interaction
  1. Crystal field and anisotropy
  2. Electronic structure
  3. Magneto-elastic interactions
  4. Rare-earth systems
  5. 5f systems
  6. Interaction mechanism
  7. Transition metal alloys and compounds

Soft and Hard Magnetic Materials
  1. Amorphous and nanocrystalline materials
  2. Ferrites, garnets and microwave materials
  3. Rare earth permanent magnets
  4. Magnetisation processes and hysteresis
  5. Materials for magnetic recording
  6. Ferromagnetic shape-memory materials
  7. Magneto-elastic and magnetostrictive materials
  8. Fine particles

Computational Magnetism and Modelling
  1. Numerical methods
  2. Micromagnetism
  3. Hysteresis modelling
  4. Monte Carlo simulations

Magnetism of Nanoscopic - Mesoscopic Systems
  1. Surfaces and interfaces
  2. Films, multilayers and superlattices
  3. Magnetic nanoparticles
  4. Nanostructures
  5. Quantum tunnelling

Artificially Structured Materials
  1. Patterned films
  2. Nanoparticle arrays
  3. Nanowires, nanotubes, nanodots

Molecular Magnetism
  1. Single molecule magnets
  2. Low-dimensionality systems
  3. Molecular metals and semiconductors
  4. Organic and organo-metallic materials
  5. Chyral magnetism and photomagnetism
  6. Spin cross-over and level crossing
  7. Quantum tunnelling

Techniques
  1. Magnetic microscopy, imaging, holography
  2. Magnetic dichroism
  3. Synchrotron radiation
  4. Neutron scattering and spectroscopy
  5. NMR and muon spin rotation
  6. Other magnetic resonances and Mossbauer effect
  7. High pulsed fields

Specific Applications of Magnetism
  1. Instruments and measuring techniques
  2. Magnetic sensors
  3. MEMS
  4. Actuators and magnetic drives
  5. Magnetic fluids
  6. Magnetic and magneto-optical recording
  7. Magnetic refrigeration
  8. Magnetic separation
  9. Magnetic levitation

Interdisciplinary Topics
  1. Biomagnetism
  2. Magnetism in medicine
  3. Magnetism and cultural heritage
  4. Magnetoelectrochemistry

 



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