Dong-Keun Ki
Assistant Professor, Department of Physics, Faculty of Science at The University of Hong Kong (HKU)
Schools
- The University of Hong Kong (HKU)
Links
Biography
The University of Hong Kong (HKU)
Research Interest
- Low-dimensional nano-electronics
- Quantum coherence and correlation effects
- Topological states
- Graphene and 2D materials
- Thermoelectric and energy materials
Education
- Doctor of Philosophy (Ph.D.) 포항공과대학교 / Pohang University of Science and Technology (2004 — 2010)
- Bachelor's degree 포항공과대학교 / Pohang University of Science and Technology (1997 — 2004)
Work Experience
- 2018 ~ present | Assistant Professor, Department of Physics, The University of Hong Kong, Hong Kong
- 2014 ~ 2018 | Collaborateur scientifique trice-II (Senior Research Associate) in Department of Quantum Matter Physics (DQMP) and Group of Applied Physics (GAP), University of Geneva, Switzerland
- 2010 ~ 2014 | Postdoctoral researcher in Prof. Alberto Morpurgo’s group in Départment de Physique de la Matière Condensée (DPMC) and Group of Applied Physics (GAP), University of Geneva, Switzerland
Representative Publications: Five Selected Publications
- Youngwoo Nam, Dong-Keun Ki, David Soler-Delgado, and Alberto F. Morpurgo, “A family of finite-temperature electronic phase transitions in graphene multilayers”, Science 362, 324 (2018)
- Youngwoo Nam, Dong-Keun Ki, David Soler-Delgado, and Alberto F. Morpurgo, “Electron-hole collision limited transport in charge-neutral bilayer graphene”, Nat. Phys. 13, 1207 (2017)
- Zhe Wang, Dong-Keun Ki, Diego Mauro, Jun Yong Khoo, Leonid Levitov, and Alberto F. Morpurgo, “Origin and magnitude of ‘designer’ spin-orbit interaction in graphene on semiconducting transition metal dichalcogenides”, Phys. Rev. X6, 041020 (2016)
- Dong-Keun Ki, Vladimir I. Fal'ko, Dmitry A. Abanin, and Alberto F. Morpurgo, “Observation of Even Denominator Fractional Quantum Hall Effect in Suspended Bilayer Graphene” Nano Lett.14, 2135 (2014)
- Dong-Keun Ki and Alberto F. Morpurgo, “Crossover from Coulomb Blockade to Quantum Hall Effect in Suspended Graphene Nanoribbons” Phys. Rev. Lett.108, 266601 (2012)
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