Area of research
Atomic and Molecular Physics, and Optics · Condensed Matter Physics
Research interest
Research interests include Skyrmion, Condensed matter physics, Physics, Materials science, Spin (aerodynamics), and Torque.
Depth Profiling of Oxygen Migration in Ta/HfO <sub>2</sub> Stacks during Ionic Liquid Gating
Harnessing orbital Hall effect in spin-orbit torque MRAM
Chiral-induced unidirectional spin-to-charge conversion
Real-time observation of topological defect dynamics mediating two-dimensional skyrmion lattice melting
Realizing Quantitative Quasiparticle Modeling of Skyrmion Dynamics in Arbitrary Potentials
Identification of Orbital Pumping from Spin Pumping and Rectification Effects
Correlating on-the-fly electrical and optical skyrmion readout
Gesture recognition with Brownian reservoir computing using geometrically confined skyrmion dynamics
Skyrmion flow in periodically modulated channels
Effects of Chiral Polypeptides on Skyrmion Stability and Dynamics
Detection of long-range orbital-Hall torques
Enhanced thermally-activated skyrmion diffusion with tunable effective gyrotropic force
300‐Times‐Increased Diffusive Skyrmion Dynamics and Effective Pinning Reduction by Periodic Field Excitation
Controlling the Interlayer Dzyaloshinskii–Moriya Interaction by Electrical Currents
Tailoring Magnetic Properties and Suppressing Anisotropy in Permalloy Films by Deposition in a Rotating Magnetic Field
Dzyaloshinskii–Moriya Interaction and Its Current-Induced Manipulation
Non-Conventional Computing using thermal and driven Skyrmion Dynamics
Brownian reservoir computing realized using geometrically confined skyrmion dynamics
Megahertz-rate ultrafast X-ray scattering and holographic imaging at the European XFEL
Direct Imaging of Chiral Domain Walls and Néel‐Type Skyrmionium in Ferrimagnetic Alloys
Harnessing Orbital-to-Spin Conversion of Interfacial Orbital Currents for Efficient Spin-Orbit Torques