People

Professor

Professor

Changhee Sohn손창희

  • metal-insulator transition
  • density functional theory
  • atomic layer deposition
  • epitaxy
  • oxygen vacancies
  • Oxide heterostructures

연구주제

Condensed Matter Physics Experiment

  • 연구실Laboratory of Unobtainable Functional Oxides

Current Research Interests

  • Designing and discovering phases of matter that do not naturally exist
  • 1) Quantum Materials: Many-body quantum entanglement, Fractional excitations, Topological qubits
  • - Realization of quantum spin liquid states via heterostructure engineering
  • - Detections and manipulations of fractional excitations through spintronics techniques
  • - Exploration of entangled quantum phases as platforms for topological qubits
  • 2) Optical Materials: Materials for advanced optics and photonics
  • - Low-dimensional excitions, giant optical anisotropy, hyperbolic dispersion
  • - Design of bolometric materials for high-sensitivity infrared sensing
  • - Development of novel materials for optical modulators
  • 3) Ferroic Materials: Emerging ferroic systems for future memory and logic applications
  • - Altermagnetic materials for next-generation spintronics
  • - Materials for multi-level and neuromorphic memory devices

Biographical Sketch

  • B.S. in Physics (2010), Seoul National University, Seoul, Korea
  • Ph.D. in Physics (2015), Seoul National University, Seoul, Korea
  • – Dissertation: “Optical spectroscopic studies on the electronic structures coupled to lattice/spin degrees of freedom in 5d transition metal oxides”
  • – Advisor: Prof. Tae Won Noh
  • Postdoctoral research associate in the Group of Dr. Ho Nyung Lee (2016 – 2019)
  • – Materials Science and Technology division, Oak Ridge National Laboratory, TN
  • Assistant Professor in the Department of Physics, UNIST (2019 – 2024)
  • Associate Professor in the Department of Physics, UNIST (2025 – )

Selected Publications

  • Tunneling magnetoresistance in altermagnetic RuO2-based magnetic tunnel junctions, Phys. Rev. Lett. 134, 246703 (2025).
  • Optical detection of bond-dependent and frustrated spin in the two-dimensional cobalt-based honeycomb antiferromagnet Cu3Co2SbO6, Nat. Commun. 16, 1323 (2025).
  • Suppression of antiferromagnetic order by strain-enhanced frustration in honeycomb cobaltate, Science Advances 10, eadn8694 (2024).
  • Honeycomb oxide heterostructure as a candidate host for a Kitaev quantum spin liquid, Phys. Rev. B 107, 075103 (2023).
  • Extended Oxygen Octahedral Tilt Proximity near Oxide Heterostructures, Nano Letters 23 (3), 1036-1043 (2023).

Lab Introduction video

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