Bulletin of the American Physical Society
APS March Meeting 2022
Volume 67, Number 3
Monday–Friday, March 14–18, 2022; Chicago
Session F63: Metal-Insulator Transitions: Experiment
8:00 AM–11:00 AM,
Tuesday, March 15, 2022
Room: Hyatt Regency Hotel -Grant Park A
Sponsoring
Unit:
DCMP
Chair: Shengzhi Zhang, NHMFL, LANL
Abstract: F63.00004 : Insulator-Metal-Transition of VO2 with Modified Orbital Occupancy by Octahedral Symmetry*
8:36 AM–8:48 AM
Presenter:
Dooyong Lee
(Department of Chemical Engineering and Materials Science, University of Minnesota)
Authors:
Sehwan Song
(Pusan National University)
Dooyong Lee
(Department of Chemical Engineering and Materials Science, University of Minnesota)
Taewon Min
(Pusan National University)
Jiwoong Kim
(Pusan National University)
Jisung Lee
(Korea Basic Science Institute)
Haeyong Kang
(Pusan National University)
Jouhahn Lee
(Korea Basic Science Institute)
Deok-Yong Cho
(Jeonbuk National University)
Jaekwang Lee
(Pusan National University)
Jae Hyuck Jang
(Korea Basic Science Institute)
Sungkyun Park
(Pusan National University)
In this presentation, we show the correlation between the asymmetry octahedral structure, orbital occupancy, and the IMT temperature of monoclinic VO2 films with different in-plane compressive strains using x-ray diffraction and x-ray spectroscopy techniques with the theoretical calculation. The octahedral structure with low asymmetry, caused by the in-plane compressive strain, increased the splitting between d// and d//* orbitals and the bandwidth of π*. The modified orbitals suppressed the hybridization of V 3d - O 2p and subsequently increased interdimer hopping energy, lowering the energy barrier for IMT. As a result, the VO2 with the low asymmetric octahedral structure has a lower IMT temperature than the VO2 with a high asymmetric one. These results provide the role of octahedral symmetry in tuning the IMT temperature of VO2.
*This study was supported in part by NRF Korea (NRF-2018R1D1A1B07045663, NRF-2020K1A3A7A09077715, NRF-2021M3H4A6A02045432, NRF-2021M3I3A1084719 ) and by Korea Basic Science Institute (National Research Facilities and Equipment Center) grant funded by the Ministry of Education (grant No. 2021R1A6C101A429).
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