Dimensionality Control of d-orbital Occupation in Oxide Superlattices

  • Jeong, Da Woon
  • Choi, Woo Seok
  • Okamoto, Satoshi
  • Kim, Jae-Young
  • Kim, Kyung Wan
  • ... Moon, Soon Jae
  • 외 3명
Citations

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초록

Manipulating the orbital state in a strongly correlated electron system is of fundamental and technological importance for exploring and developing novel electronic phases. Here, we report an unambiguous demonstration of orbital occupancy control between t(2g) and e(g) multiplets in quasi-two-dimensional transition metal oxide superlattices (SLs) composed of a Mott insulator LaCoO3 and a band insulator LaAlO3. As the LaCoO3 sublayer thickness approaches its fundamental limit (i.e. one unit-cell-thick), the electronic state of the SLs changed from a Mott insulator, in which both t(2g) and e(g) orbitals are partially filled, to a band insulator by completely filling (emptying) the t(2g) (e(g)) orbitals. We found the reduction of dimensionality has a profound effect on the electronic structure evolution, which is, whereas, insensitive to the epitaxial strain. The remarkable orbital controllability shown here offers a promising pathway for novel applications such as catalysis and photovoltaics, where the energy of d level is an essential parameter.

키워드

TRANSITION
제목
Dimensionality Control of d-orbital Occupation in Oxide Superlattices
저자
Jeong, Da WoonChoi, Woo SeokOkamoto, SatoshiKim, Jae-YoungKim, Kyung WanMoon, Soon JaeCho, Deok-YongLee, Ho NyungNoh, Tae Won
DOI
10.1038/srep06124
발행일
2014-08
유형
Article
저널명
Scientific Reports
4
페이지
1 ~ 5

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