Enhanced magnetoresistance properties in La0.7−xSmxCa0.3MnO3 epitaxial films

Author:

Chen Rui1,Ip Kin Hong2,Huang Xin1,Li Junhong1,Dong Zhiliang1,Shao Men1,Xu Min3,Yang Weiyi1,Yan Tingting1,Li Zhidong1,Zhang Hui1ORCID,Ma Ji1ORCID,Yang Sheng’an1ORCID,Chen Qingming1ORCID

Affiliation:

1. Faculty of Material Science and Engineering, Kunming University of Science and Technology, Kunming 650093, Yunnan, China

2. Heritage Conservation Laboratory, Macau University of Science and Technology, Macau 999078, China

3. Faculty of Metallurgical and Energy Engineering, Kunming University of Science and Technology, Kunming 650093, China

Abstract

The electrical and magnetic properties of strongly correlated manganese oxides originate from and depend on the coupling of spin, orbital, lattice and other degrees of freedom, and can also be controlled by external stimuli (such as a magnetic field). Here, the films have been prepared using spin-coating method to determine the role of Jahn–Teller (JT) distortion and double exchange (DE) interaction in electronic transport and magnetoresistance (MR) by magnetic field in La[Formula: see text]SmxCa[Formula: see text]MnO3/SrTiO3(001). The Sm-induced lattice distortion suppresses the metal-insulator transition temperature and increases the films’ resistivity, which is due to the weakening of the DE interaction between Mn[Formula: see text]–O[Formula: see text]–Mn[Formula: see text] ions and the enhancement of the single electron bandwidth. Moreover, the MR can be increased to 96.5% and the AMR can be increased to 66.6% under 1 T magnetic field. These findings indicate the importance of JT distortion in multi-field control of hole-doped perovskite manganites.

Funder

Innovative Research Group Project of the National Natural Science Foundation of China

Analysis and Testing Foundation of Kunming University of Science and Technology

Publisher

World Scientific Pub Co Pte Ltd

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