Area of research
Atomic and Molecular Physics, and Optics · Materials Chemistry
Research interest
Research interests include Quantum and electron transport phenomena, Topological Materials and Phenomena, Graphene research and applications, and Physics of Superconductivity and Magnetism.
Orbital hybridization in graphene-based artificial atoms
Spin-to-Charge Conversion Modulated by Chiral Molecules
Electrically controlled field-free Josephson diode effect in two-dimensional antiferromagnets
Antiferromagnetic local volatile memory utilizing non-collinear Mn3Sn thin films and chiral gating
Rules for dissipationless topotronics
Relativistic artificial molecule of two coupled graphene quantum dots at tunable distances
Tunable Quantum Confinement in Individual Nanoscale Quantum Dots via Interfacial Engineering
Transport theory in non-Hermitian systems
Visualizing a single wavefront dislocation induced by orbital angular momentum in graphene
Contact effects on electron transport along disordered borophene nanoribbons with line defects
Antiferromagnetic superlattices: Anisotropic band and spin-valley valve in buckled two-dimensional materials
Enhanced electron transport and self-similarity in quasiperiodic borophene nanoribbons with line defects
Topologically nontrivial and trivial zero modes in chiral molecules
Cone-dependent retro- and specular Andreev reflections in AA-stacked bilayer graphene
Topologically protected magnetoresistance by quantum anomalous Hall effect
Resonant tunneling in disordered borophene nanoribbons with line defects
Effect of transcranial direct current stimulation combined with a smart hand joint training device on hand dysfunction in patients with early stroke
Charge Transport in a Multiterminal DNA Tetrahedron: Interplay among Contact Position, Disorder, and Base-Pair Mismatch
Strongly correlated electrons in superconducting islands with fluctuating Cooper pairs
Enhancement of electron transport and band gap opening in graphene induced by adsorbates