English

Large-scale epitaxy of two-dimensional van der Waals room-temperature ferromagnet Fe5GeTe2

Materials Science 2022-02-25 v1

Abstract

In recent years, two-dimensional van der Waals materials have emerged as an important platform for the observation of long-range ferromagnetic order in atomically thin layers. Although heterostructures of such materials can be conceived to harness and couple a wide range of magneto-optical and magneto-electrical properties, technologically relevant applications require Curie temperatures at or above room-temperature and the ability to grow films over large areas. Here we demonstrate the large-area growth of single-crystal ultrathin films of stoichiometric Fe5GeTe2 on an insulating substrate using molecular beam epitaxy. Magnetic measurements show the persistence of soft ferromagnetism up to room temperature, with a Curie temperature of 293 K, and a weak out-of-plane magnetocrystalline anisotropy. Surface, chemical, and structural characterizations confirm the layer-by-layer growth, 5:1:2 Fe:Ge:Te stoichiometric elementary composition, and single crystalline character of the films.

Keywords

Cite

@article{arxiv.2106.12808,
  title  = {Large-scale epitaxy of two-dimensional van der Waals room-temperature ferromagnet Fe5GeTe2},
  author = {Mário Ribeiro and Giulio Gentile and Alain Marty and Djordje Dosenovic and Hanako Okuno and Céline Vergnaud and Jean-François Jacquot and Denis Jalabert and Danilo Longo and Philippe Ohresser and Ali Hallal and Mairbek Chshiev and Olivier Boulle and Frédéric Bonell and Matthieu Jamet},
  journal= {arXiv preprint arXiv:2106.12808},
  year   = {2022}
}