The 5th International Workshop on Orbitronics
25-28 January 2027, Korea University, Seoul, Korea
25-28 January 2027, Korea University, Seoul, Korea
The International Workshop on Orbitronics 2027 will bring together leading researchers and emerging scientists working on orbitronics, and more generally, quantum dynamics of angular momentum in materials and devices.
Orbitronics has rapidly developed into a broad and active field connecting condensed-matter physics, materials science, magnetism, spintronics, and quantum transport. Recent advances have demonstrated that orbital angular momentum can be generated, transported, manipulated, and converted into other electronic degrees of freedom, opening new opportunities for fundamental discoveries and energy-efficient information technologies.
The workshop will provide a focused forum for presenting recent theoretical and experimental developments, identifying outstanding questions, and exploring future directions for the international orbitronics community.
Dates: January 25–28, 2027
Venue: Yu Im-Soon Hall, College of Science, Korea University
Address: 145 Anam-ro, Seongbuk-gu, Seoul 02841, Republic of Korea
Korea University is located in Seoul and can be conveniently reached by public transportation from central Seoul and the major international airports. The venue is accessible via Anam Station on Seoul Metro Line 6.
Dongwook Go — Korea University, Korea
Kazuya Ando — Keio University, Japan
Felix Casanova — CIC nanoGUNE, Spain
Hyun-Woo Lee — Pohang University of Science and Technology, Korea
The workshop is jointly hosted and supported by:
Center for Quantum Dynamics of Angular Momentum, Science Research Center, Pohang University of Science and Technology
BK21 Four Project: New Paradigm in Physics Research and Education, Department of Physics, Korea University
Topics of interest include, but are not limited to:
Orbital Hall and orbital Edelstein effects
Orbital currents and orbital accumulation
Orbital torque and orbital-to-spin conversion
Generation, transport, relaxation, and detection of orbital angular momentum
Orbital dynamics, pumping, and resonance
Orbital magnetization and orbital textures
Quantum geometry and orbital responses
Orbitronics in magnetic, topological, chiral, and two-dimensional materials
Interactions among electronic, spin, orbital, lattice, magnon, and phonon angular momenta
Ultrafast and optical control of orbital degrees of freedom
First-principles and model approaches to orbital transport
Experimental probes and device applications of orbitronics
Connections among orbitronics, spintronics, magnonics, phononics, and quantum materials
Registration opens: To be announced
Abstract submission deadline: To be announced
Registration deadline: To be announced
Workshop dates: January 25–28, 2027
For inquiries concerning the workshop, please contact:
Dongwook Go
Department of Physics
Korea University
Email: dongwookgo@korea.ac.kr
Web: https://go-lab.korea.ac.kr/