The 21st International Conference on Magnetism (ICM2018) will be held in San Francisco, USA, July 16-20, 2018. ICM2018 will be run concurrently with the International Conference on Strongly Correlated Electron Systems (SCES2018). ICM2018 continues a series of meetings held every three years, most recently in Barcelona, Busan, Karlsruhe, and Kyoto, and covers both fundamental and applied research related to magnetism. More than 2,000 scientists from all over the world are expected to attend.
On behalf of the Management Committee of ICM2018, we cordially invite you to attend the Conference and actively participate in its technical sessions, and by doing so to contribute to the continued success of the ICM Conference series. ICM2018 provides an opportunity for you to share your research with the largest and broadest collection of magnetism researchers assembled in one place, and to learn about the most recent developments in the field.
List of Topics
Conference sessions will be organized under the following topics:
Topic 1: Strongly Correlated Electrons Systems (SCES)
1.01 Superconductivity and magnetism
1.02 Topological states in strongly correlated electron systems
1.03 Heavy fermion systems and Kondo physics including spin,
charge and orbital degrees of freedom
1.04 Quantum spin liquids
1.05 Non-Fermi liquids, quantum criticality and metal-insulator
transitions
1.06 Non-equilibrium physics in SCES, including mesoscopic
Kondo and non-equilibrium pump-probe states
1.07 Theory of strongly correlated electron systems
1.08 New developments
Topic 2: Spin-Systems and Magnetic Structures
2.01 One dimensional magnetism
2.02 Molecular magnetism
2.03 Highly frustrated magnetism
2.04 Spin liquid phases of interacting spin systems
2.05 Magnetic theory and simulation of quantum and classical
systems
2.06 Spin structure, electronic structure, and transport properties
2.07 Multiferroics
2.08 Magnetic interactions and magnetic phase transitions
Topic 3: Spintronics, Magnetization Dynamics, and Micromagnetics
3.01 Spin transport phenomena: AMR, GMR, TMR, STT, SMR, etc.
3.02 Tunnel junctions and spin-torque nano-oscillators
3.03 Spin-orbit torques and spin-charge conversion
3.04 Spin caloritronics
3.05 Electric field effects on magnetic systems and voltage
controlled switching
3.06 Magnetic semiconductors
3.07 Semiconductor and organic spintronics
3.08 Antiferromagnetic spintronics
3.09 Domain wall dynamics
3.10 Vortex and skyrmion dynamics
3.11 FMR and spinwaves dynamics
3.12 Ultrafast magnetization dynamics and terahertz spintronics
Topic 4: Nanomagnetism
4.01 Advanced synthesis of magnetic thin films and multilayers
4.02 Anisotropy engineering of magnetic thin films and multilayers
4.03 Novel applications of magnetic thin films and multilayers
4.04 Surface and interface effects
4.05 Exchange bias and exchange springs
4.06 Theory and modeling of nanomagnetic systems
4.07 Thin film and hybrid nanostructures
4.08 Arrays of magnetic nanostructures including artificial spin ice
4.09 Advanced synthesis, characterization and modelling of
nanoparticles
4.10 Diagnostic biomedical applications of MNPs
4.11 Therapeutic (including “theranostic”) biomedical applications
of MNPs
4.12 Non-biomedical applications of nanoparticles
4.13 Magnetic nanowires and nanotubes
4.14 Magnetophotonics and magnetoplasmonics
Topic 5: Magnetic Materials and Technologies
5.01 Hard magnetic materials
5.02 Soft magnetic materials and magnetic shielding
5.03 Materials for Energy applications
5.04 Novel materials for sensors, half-metallic ferromagnets,
antiferromagnets and magnetic oxides
5.05 Magnetic molecules and organics for bio-applications of
magnetism
5.06 Measuring techniques and instrumentation
5.07 Magnetic devices for information storage and processing
07月15日
2018
07月20日
2018
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