Electronic structure and spontaneous magnetization in Mn-doped SnO2

Authors
Aljawfi, Rezq NajiAbu-Samak, MahmoudSwillam, Mohammed A.Chae, Keun HwaKumar, ShalendraMcLeod, John A.
Issue Date
2020-07-28
Publisher
AMER INST PHYSICS
Citation
JOURNAL OF APPLIED PHYSICS, v.128, no.4
Abstract
Mn-doped SnO 2 is a promising dilute magnetic semiconductor; however, there are many inconsistent reports on the magnetic ordering in the literature. We investigate the magnetic ordering and the local electronic structure in stoichiometric and Mn-doped (with Mn concentrations of 1at.%, 3at.%, and 6at.%) SnO 2 using magnetization measurements, Mn L 2 , 3-edge and O K-edge x-ray absorption fine structure measurements, and density functional theory and model Hamiltonian calculations. We find that paramagnetic and ferromagnetic behavior is present as a function of Mn concentration and, in particular, that paramagnetic, ferromagnetic, and antiferromagnetic order coexist independently in Mn(6%):SnO 2. Simultaneously, we find that Mn 2 +, Mn 3 +, and Mn 4 + also coexist in Mn(6%):SnO 2. These findings demonstrate the care needed to study Mn:SnO 2 and point to the wealth of magnetic behaviors that might be realized with careful control of synthesis conditions.
Keywords
X-RAY-ABSORPTION; RUTILE-TYPE COMPOUNDS; RAMAN-SPECTRUM; THIN-FILMS; FERROMAGNETISM; SPECTROSCOPY; CO; X-RAY-ABSORPTION; RUTILE-TYPE COMPOUNDS; RAMAN-SPECTRUM; THIN-FILMS; FERROMAGNETISM; SPECTROSCOPY; CO; Electronic structure; magnetization; Mn-doped SnO2; dilute magnetic semiconductor; density functional theory
ISSN
0021-8979
URI
https://pubs.kist.re.kr/handle/201004/118357
DOI
10.1063/5.0012415
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KIST Article > 2020
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