Research

Research Directions

From Fundamentals to Emerging Electronic Systems

We combine nanoscale transport, emerging magnetic materials, and magnetic-device engineering to develop new concepts for future electronics and computing.

Spin, orbital and phonon transport for nanoelectronics
Research 01

Spin, Orbital & Phonon Transport for Nanoelectronics

We investigate the generation, transport and interconversion of spin, orbital and phonon angular momentum in nanoscale materials and heterostructures, and exploit these channels to realize efficient electronic functionalities.

  • Spin transport and spin-orbit torque
  • Orbital transport and orbitronics
  • Phonon-mediated angular-momentum transport
  • Spin–orbital–phonon interconversion for nanoelectronics
Antiferromagnets, altermagnets and emerging materials
Research 02

Antiferromagnets, Altermagnets & Emerging Materials for Spintronics

We explore antiferromagnets, altermagnets and other emerging magnetic materials as platforms for new spintronic devices, with emphasis on material properties and transport responses that can be translated into practical device operation.

  • Antiferromagnetic and altermagnetic spintronics
  • Emerging magnetic materials and heterostructures
  • Epitaxial thin-film growth and interface engineering
  • Electrical manipulation and detection of magnetic order
MRAM, random telegraph noise and probabilistic computing
Research 03

MRAM, Probabilistic Computing & Process-in-Memory

We develop magnetic tunnel-junction devices and MRAM-based computing concepts that exploit nonvolatility, stochastic switching and in-memory operation for next-generation information-processing architectures.

  • Spin-orbit-torque and advanced MRAM
  • Stochastic MTJs and random-telegraph-noise devices
  • Probabilistic computing and p-bits
  • Process-in-memory and neuromorphic computing