INTERMAG 2026 Conference Technical Categories

  1. Fundamental Properties and Cooperative Phenomena
    1. Electronic Structure of Magnetic Materials
    2. Highly Frustrated Magnetism, Spin Glasses and Critical Phenomena
    3. Quantum, Strongly-Correlated, Topological Magnetic Materials and Superconductivity
    4. 2D and van der Waals Magnetic Materials
    5. Molecular Magnets
  2. Magnetoelectronic Materials and Phenomena
    1. Heusler Alloys, Half-Metallic Materials and Magnetic Semiconductors
    2. Complex Oxides
    3. Multiferroics and Magnetoelectric Phenomena and Materials
    4. Voltage-Controlled Magnetic Anisotropy and Magneto-ionics
  3. Soft Magnetic Materials
    1. Ferrites and Garnets
    2. Crystalline Alloys
    3. Amorphous and Nanocrystalline Materials
    4. Magneto-Dielectric Materials
  4. Hard Magnetic Materials
    1. Rare-Earth Compounds
    2. Nanostructured and Composite Hard Magnetic Materials
    3. Rare-Earth Free Hard Magnetic Materials
  5. Structured Materials
    1. Thin Films and Surface Effects
    2. Multilayered Films and Superlattices
    3. Nanocomposite and Granular Magnetic Materials
    4. Exchange Bias
    5. Magnetic Nanoparticles
    6. 2D and 3D Individual Nanostructures and their Arrays
  6. Materials with Coupled Magnetic Functionality
    1. Magneto-Optical Materials
    2. Magneto-Elastic Materials
    3. Magneto-Caloric and Multi-Caloric Materials
    4. New Coupled Magnetic Phenomena
  7. Spintronics
    1. Magnetoresistance (GMR, TMR, TAMR, etc.)
    2. Spin Transport, Spin Injection and Spin Pumping
    3. Spin Caloritronics and Thermoelectrics
    4. Spintronic Devices (MRAM, Magnetic Logic, Oscillators, Detectors, etc)
    5. Spin-Orbitronics (Spin-Orbit and Orbital Torques)
    6. Antiferromagnetic and Ferrimagnetic Spintronics
    7. THz Spintronics
    8. Altermagnets
  8. Magnetization Dynamics and Micromagnetics
    1. Ultrafast Magnetization Dynamics and Switching
    2. Coupled Spin-Phonon Dynamics and Magnetoelastic Waves
    3. Ferromagnetic Resonance and Spin Waves
    4. Domain Wall Dynamics
    5. Topologically Non-Trivial Spin Textures (Vortices, Skyrmions, Hopfions etc)
    6. New Approaches in Simulations of Magnetic Materials (including Atomistic, Micromagnetics, Hysteresis and Machine-Learning Techniques)
  1. Magnetic Recording, Sensors and Energy Harvesting Applications
    1. Recording Media, Write and Read Heads
    2. Energy-Assisted Recording
    3. Novel Recording Methods 
    4. Sensors (Non-Recording Devices and Concepts)
    5. Microwave and Millimeter Wave Materials and Devices
    6. Novel Sensing and Recording Applications
    7. Energy Harvesting Applications
  2. Microscopy, Imaging and Magnetic Characterization
    1. Novel Instrumentation and Measurement Techniques
    2. Magnetic Microscopy and Imaging
  3. Biomedical Applications and Magneto-Fluidics
    1. Bio-Magnetism and Biomedical Applications
    2. Biomedical Therapies, Diagnostics and Imaging
    3. Magnetohydrodynamics
    4. Micro, Nano and Ferro-Fluids, Liquid Robotics
  4. Non-Conventional Computing with Magnetic Devices, Materials and Systems
    1. Neuromorphic Computing and Neural Networks with Magnetic Devices
    2. Combinatorial Optimization (p-bits, Ising Systems, Networks of Coupled Spin-Hall or Torque Oscillators, etc.)
    3. Quantum Information, Quantum Magnonics and Quantum Computing with Spin q-bits
  5. Electrical Machines, Electromagnetic Devices and Systems
    1. High-Speed Electrical Machines
    2. Wound-Field and Multi-Excited Rotating Electrical Machines
    3. Induction and Reluctance Machines
    4. Magnetic Bearings and Magnetic Levitation
    5. Transformers, Inductors and Magnetic Aspects Related to Power Electronics
    6. Linear Machines, Actuators and Applications
    7. Surface and Interior Permanent Magnet Machines
    8. Magnetically Geared Machines
    9. Special Electrical Machines
  6. Simulation and Design Optimization of Electromagnetic Systems
    1. Computational Magnetism for Design of Electromagnetic Devices
    2. AI for Design of Electromagnetic Devices and Electrical Machines
    3. Magnetic Aspects of Electrical Machine Optimization
    4. Magnetic Losses, Thermal Modeling and Measurements
  7. Emergent and Interdisciplinary Topics in Magnetism
    1. Emerging Topics Related to Magnetism and Magnetic Materials
    2. Interdisciplinary Topics Related to Magnetism and Magnetic Materials