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Room Temperature Intrinsic Ferromagnetism in Epitaxial Manganese Selenide Films in the Monolayer Limit.
O'Hara, Dante J; Zhu, Tiancong; Trout, Amanda H; Ahmed, Adam S; Luo, Yunqiu Kelly; Lee, Choong Hee; Brenner, Mark R; Rajan, Siddharth; Gupta, Jay A; McComb, David W; Kawakami, Roland K.
Afiliación
  • O'Hara DJ; Materials Science and Engineering , University of California , Riverside , California 92521 , United States.
  • Zhu T; Department of Physics , The Ohio State University , Columbus , Ohio 43210 , United States.
  • Trout AH; Center for Electron Microscopy and Analysis , The Ohio State University , Columbus , Ohio 43212 , United States.
  • Ahmed AS; Department of Materials Science and Engineering , The Ohio State University , Columbus , Ohio 43210 , United States.
  • Luo YK; Department of Physics , The Ohio State University , Columbus , Ohio 43210 , United States.
  • Lee CH; Department of Physics , The Ohio State University , Columbus , Ohio 43210 , United States.
  • Brenner MR; Department of Electrical and Computer Engineering , The Ohio State University , Columbus , Ohio 43210 , United States.
  • Rajan S; Department of Electrical and Computer Engineering , The Ohio State University , Columbus , Ohio 43210 , United States.
  • Gupta JA; Semiconductor Epitaxy and Analysis Laboratory , The Ohio State University , Columbus , Ohio 43210 , United States.
  • McComb DW; Department of Materials Science and Engineering , The Ohio State University , Columbus , Ohio 43210 , United States.
  • Kawakami RK; Department of Electrical and Computer Engineering , The Ohio State University , Columbus , Ohio 43210 , United States.
Nano Lett ; 18(5): 3125-3131, 2018 05 09.
Article en En | MEDLINE | ID: mdl-29608316
ABSTRACT
Monolayer van der Waals (vdW) magnets provide an exciting opportunity for exploring two-dimensional (2D) magnetism for scientific and technological advances, but the intrinsic ferromagnetism has only been observed at low temperatures. Here, we report the observation of room temperature ferromagnetism in manganese selenide (MnSe x) films grown by molecular beam epitaxy (MBE). Magnetic and structural characterization provides strong evidence that, in the monolayer limit, the ferromagnetism originates from a vdW manganese diselenide (MnSe2) monolayer, while for thicker films it could originate from a combination of vdW MnSe2 and/or interfacial magnetism of α-MnSe(111). Magnetization measurements of monolayer MnSe x films on GaSe and SnSe2 epilayers show ferromagnetic ordering with a large saturation magnetization of ∼4 Bohr magnetons per Mn, which is consistent with the density functional theory calculations predicting ferromagnetism in monolayer 1T-MnSe2. Growing MnSe x films on GaSe up to a high thickness (∼40 nm) produces α-MnSe(111) and an enhanced magnetic moment (∼2×) compared to the monolayer MnSe x samples. Detailed structural characterization by scanning transmission electron microscopy (STEM), scanning tunneling microscopy (STM), and reflection high energy electron diffraction (RHEED) reveals an abrupt and clean interface between GaSe(0001) and α-MnSe(111). In particular, the structure measured by STEM is consistent with the presence of a MnSe2 monolayer at the interface. These results hold promise for potential applications in energy efficient information storage and processing.
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Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Idioma: En Revista: Nano Lett Año: 2018 Tipo del documento: Article País de afiliación: Estados Unidos

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Idioma: En Revista: Nano Lett Año: 2018 Tipo del documento: Article País de afiliación: Estados Unidos