| First Name |
Last Name |
Company / Institution
| Research Interests
|
| Jordan |
Katine |
Hitachi Global Storage Technologies
| - Magnetic recording
- Spin torque phenomena
- Device nanofabrication techniques
|
| Adekunle O. |
Adeyeye |
National University of Singapore
| - Ferromagnetic and exchange biased nanostructures
- Spin dependent transport in nanostructures
- Multiferroic nanostructures
|
| Amr |
Adly |
University of Cairo |
- Field computation in complex media
- Electromagnetic actuators, electric machines
- Superconductivity
|
| Dario |
Arena |
Brookhaven National Laboratory |
- Chemical and magnetic structure of multilayer films (XMCD)
- Magnetization dynamics in multilayers using ultrafast time-resolved XRMS
- Investigations of magnetization dynamics using XMCD
|
| Sharat |
Batra |
Consultant |
- Conventional perpendicular recording
- Heat assisted recording
- Recording systems
|
| Byong C. |
Choi |
University of Victoria, Canada |
- Nonequilibrium magnetization phenomena
- Time-resolved MOKE measurements
|
| Alina |
Deac |
NIST Boulder |
- Spin torque oscillators, STT-MRAM
- CPP-GMR
- Perpendicular anisotropy materials
|
| Haifeng |
Ding |
Nanjing University |
- Magnetic nanostructures
- Spin polarized scanning tunneling microscopy
- Molecular beam epitaxy
|
| Jurgen |
Fassbedner |
Forschungszentrum Dresden-Rossendorf |
- Nanofabrication of magnetic devices
- Magnetization dynamics
- Ion irradiation induced effects
|
| Miguel |
Garcia |
Instituto de Cerámica y Vidrio, Spain |
- Magnetic and optical properties of nanostructures
- Surface palsmon resonance in nanoparticles and thin films
- Instrumentation, design of measurement devices and protocols
|
| Maria Elena |
Gomez |
Universidad del Valle |
- Magnetic thin films
- Magnetic superlattices
- Magnetoelectric effect in oxide heterostructures
|
| Mel |
Gomez |
University of Maryland |
- Experimental condensed matter physics
- Spin-dependent transport, surface science
- Characterization of surface magnetism
|
| Oliver |
Gutfleisch |
IFW Dresden |
- Magnetocaloric materials, magnetic refrigeration
- Magnetic materials for energy applications
- Magnetic MEMs
- Magnetorheologic fluids and solids
|
| Ryusuke |
Hasegawa |
Metglas, Inc. |
- Magnetism in amorphous and nanocrystalline materials
- Power electronics
- Energy efficient magnetic devices
|
| Atsufumi |
Hirohata |
York University |
- Spin injection and detection in ferromagnet/semiconductor hybrid structures
- Spin modulation in lateral spin-valve devices
- Growth and characterisation of half-metallic Heusler alloy ferromagnets
|
| Axel |
Hoffmann |
Argonne National Laboratory |
- Spin transport in heterostructure devices
- Field and current driven magnetization dynamics
- Exchange coupling in heterostructures
|
| Ganping |
Ju |
Seagate Technology |
- High anisotropy media
- Ultrafast magnetization dynamics in ferromagnetic thin films
- Time-resolved Kerr microscopy
|
| Olga |
Kazakova |
National Physical Lab, UK |
- Nanomagnetism and ultra-small magnetic sensors
- Magnetism in diluted magnetic semiconductors and oxides
- Transport in low-dimensional carbon-based materials
|
| Hyun Cheol |
Koo |
KIST - Korea |
- Spin transport, spin-FET
- Spin logic device
- Spin torque memory
|
| Charles |
Krafft |
University of Maryland |
- Magnetic materials characterization
- Magneto-optic materials
- Magnetic garnets
|
| Ilya |
Krivorotov |
University of California, Irvine |
- Spin transfer torque in magnetic nanostructures
- Proximity effect in ferromagnet-superconductor heterostructures
- Non-volatile magnetic memory
|
| Elena |
Lomonova |
TU Eindhoven |
- Mechatronics
- Finite element methods of electric machines
- Power converters
|
| Stephen |
McVitie |
University of Glasgow |
- Transmission electron microscopy
- Magnetic thin film devices
- Nanofabrication methods
|
| Vitali |
Metlushko |
University of Illinois at Chicago |
- Magnetic nanostructures
- Domain walls in nanowires
- Magnetic arrays and patterned media
|
| Paulo |
Morais |
University of Brasília |
- Nanosized magnetic particle-based materials: preparation, characterization, applications
|
| Markus |
Muenzenberg |
University of Göttingen |
- Spin dynamics
- Ultrafast time-resolved spectroscopy
- Spin-torque devices and spin transport
|
| S.N. |
Piramanayagam |
Data Storage Institute, Singapore |
- Thin film technology for magnetic recording
- Nanofabrication techniques for magnetic storage technologies
|
| Philip |
Pong |
University of Hong Kong |
- Ultrasensitive magnetic tunnel junction sensors
|
| Rudolf |
Schaefer |
IFW Dresden |
- Magnetic microstructure
- Magnetization processes
- Anatomy and physics of magnetic domains
|
| Toshiyuki |
Shima |
Gakuin University |
- Magnetization processes in nano-magnets
- Thermal stability in the hard magnetic films/dot arrays
|
| Alexandru |
Stancu |
Cuza University |
- Modeling and computational magnetism
- Nanomagnetism
- Molecular magnetism
|
| Rajasekaran |
Swaminathan |
INTEL |
- High sensitivity bio/thermal/strain
- Passives integration in silicon/electronic package
|
| Toshiyuki |
Ueno |
University of Tokyo |
- Giant magnetostrictive materials
- Magnetic force control
- Microactuator using iron-gallium alloy
|
| Maria |
Varela |
Oak Ridge National Laboratory |
- Electron microscopy and spectroscopy
- Thin films
- Complex oxides
|
| Paolo |
Vavassori |
University of Ferrara |
- Magnetization reversal and soft spin waves modes in nano-structures
- Sub-ps thermomechanical and magnetic dynamics in nanomagnets
- Quantitative vector magnetometry using magneto-optic Kerr effect
|
| Pieter |
Visscher |
University of Alabama |
- Theory and simulation of magnetization dynamics
- Applications to magnetic recording
- Statistical theories of spin-torque switching
|
| John |
Xiao |
University of Delaware |
- Spintronics
- Soft magnetic materials
- Metamaterials of designed dielectric permittivity and permeability
|