This symposium will focus on emergent superconducting, magnetic, and spin–orbit-coupled phenomena at oxide interfaces and heterostructures. Topics include interfacial superconductivity in KTaO3-, SrTiO3-, nickelate-, and related oxide systems; oxide two-dimensional electron gases; magnetic proximity and exchange coupling and topological superconducting phenomena; low-dimensional superconductors; synthesis and interface engineering of oxide heterostructures; and advanced probes of interfacial electronic, magnetic, and superconducting states. The symposium aims to bring together researchers in electronic ceramics, oxide quantum materials, thin-film synthesis, quantum transport, and superconducting devices to discuss how interface design can enable new quantum phases and functionalities.
Session Topics:
Interfacial superconductivity in oxide heterostructures
Oxide two-dimensional electron gases and spin–orbit-coupled transport
Magnetic proximity effects, exchange coupling, and superconducting spintronics
Nonreciprocal, diode-like, and topological superconducting phenomena
Synthesis and interface engineering of oxide quantum materials
Advanced probes of interfacial electronic, magnetic, and superconducting states
Symposium Organizer(s):
Changjiang Liu, University at Buffalo, USA
Ludi Miao, New Mexico State University, USA
Hui Cao, University at Buffalo, USA
Point(s) of Contact:
Changjiang Liu; changjia@buffalo.edu
Division Sponsor(s):
Basic Science Division
Electronics Division
ACerS Spring Meeting 2027
May 23 • 28, 2027