Published 2020 | Version v1
Book

Temperature evolution of magnetic phases near the thickness-dependent metal-insulator transition in La1-xSrxMnO3 thin films observed by XMCD

  • 1. Tokyo University, Department of Physics, Tokyo (Japan)
  • 2. High Energy Accelerator Research Organization (KEK), Institute of Materials Structure Science, Tsukuba, Ibaraki (Japan)

Description

Perovskite-type manganites, which are well-known for their intriguing physical properties such as colossal magnetoresistance (CMR) and half metallicity, have been considered as candidate materials for spintronics. However, their ferromagnetic (FM) properties are often suppressed in thin films when the thickness is reduced down to several monolayers (MLs). In order to investigate how the magnetic phases evolve near the paramagnetic (PM)-to-FM phase transition boundary, we have performed temperature-dependent x-ray magnetic circular dichroism (XMCD) experiments on a La1-xSrxMnO3 (LSMO, x = 0.4) thin film, whose thickness (8 ML) is close to the boundary between the FM-metallic and the PM-insulating phases. By utilizing the element-selectiveness of XMCD, we have quantitatively estimated the fractions of the PM and superparamagnetic (SPM) phases as well as the FM one as a function of temperature. The results can be reasonably described based on a microscopic phase-separation model. (author)

Availability note (English)

Available from DOI: https://doi.org/10.7566/JPSCP.30.011072
Part of:
Proceedings of the international conference on strongly correlated electron systems (SCES2019)

Additional details

Identifiers

Publishing Information

Publisher
Physical Society of Japan
Imprint Place
Tokyo (Japan)
ISBN
978-4-89027-142-9
Imprint Title
Proceedings of the international conference on strongly correlated electron systems (SCES2019)
Imprint Pagination
[1157 p.]
Journal Page Range
p. 011072.1-011072.6

Conference

Title
International conference on strongly correlated electron systems
Acronym
SCES2019
Dates
23-28 Sep 2019
Place
Okayama (Japan)

Optional Information

Notes
21 refs., 3 figs.