Surface triggered stabilization of metastable charge-ordered phase in SrTiO3

  • Eom, Kitae
  • Chung, Bongwook
  • Oh, Sehoon
  • Zhou, Hua
  • Seo, Jinsol
  • 외 13명
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초록

Charge ordering (CO), characterized by a periodic modulation of electron density and lattice distortion, has been a fundamental topic in condensed matter physics, serving as a potential platform for inducing novel functional properties. The charge-ordered phase is known to occur in a doped system with high d-electron occupancy, rather than low occupancy. Here, we report the realization of the charge-ordered phase in electron-doped (100) SrTiO3 epitaxial thin films that have the lowest d-electron occupancy i.e., d(1)-d(0). Theoretical calculation predicts the presence of a metastable CO state in the bulk state of electron-doped SrTiO3. Atomic scale analysis reveals that (100) surface distortion favors electron-lattice coupling for the charge-ordered state, and triggering the stabilization of the CO phase from a correlated metal state. This stabilization extends up to six unit cells from the top surface to the interior. Our approach offers an insight into the means of stabilizing a new phase of matter, extending CO phase to the lowest electron occupancy and encompassing a wide range of 3d transition metal oxides.

키워드

ELECTRONIC-STRUCTURESUPERCONDUCTIVITYTEMPERATUREMATTER
제목
Surface triggered stabilization of metastable charge-ordered phase in SrTiO3
저자
Eom, KitaeChung, BongwookOh, SehoonZhou, HuaSeo, JinsolOh, Sang HoJang, JinhyukChoi, Si-YoungChoi, MinsuSeo, IlwanLee, Yun SangKim, YoungminLee, HyungwooLee, Jung-WooLee, KyoungjunRzchowski, MarkEom, Chang-BeomLee, Jaichan
DOI
10.1038/s41467-024-45342-8
발행일
2024-02
유형
Article
저널명
Nature Communications
15
1