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Orbital-selective confinement effect of Ru 4d orbitals in SrRuO3 ultrathin film
Authors
Beom Hyun Kim
Bongju Kim
+12 more
Byungmin Sohn
Changyoung Kim
Choong H. Kim
Daniel McNally
Eugenio Paris
Je-Geun Park
Seokhwan Yun
Soonmin Kang
Sumio Ishihara
Tae Won Noh
Thorsten Schmitt
Yi Tseng
Publication date
1 January 2019
Publisher
AMER PHYSICAL SOC
Abstract
The electronic structure of SrRuO3 thin film with a thickness from 1 to 50 unit cell (u.c.) is investigated via the resonant inelastic x-ray scattering (RIXS) technique at the O K edge to unravel the intriguing interplay of orbital and charge degrees of freedom. We found that the orbital-selective quantum confinement effect (QCE) induces the splitting of Ru 4d orbitals. At the same time, we observed a clear suppression of the electron-hole continuum across the metal-to-insulator transition occurring in the 4-u.c. sample. From these two clear observations we conclude that the QCE gives rise to a Mott insulating phase in ultrathin SrRuO3 films. Our interpretation of the RIXS spectra is supported by the configuration interaction calculations of RuO6 clusters. © 2019 American Physical Societ
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Last time updated on 06/02/2020