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Observation of the possible magnetic correction above the Curie temperature in CrSiTe single crystals.

作者信息

Sun Yan, Jiang Zhongzhu, Li Yang, Liu Lanxin, Liang Hui, Wang Yiyan, Wu Dandan, Li Na, Zhou Ying, Li Qiuju, Yue Xiaoyu, Tong Wei, Luo Xuan, Lan Jianghe, Sun Xuefeng

机构信息

Institutes of Physical Science and Information Technology, Anhui University, Hefei 230601, P. R. China.

Key Laboratory of Materials Physics, Institute of Solid State Physics, HFIPS, Chinese Academy of Sciences, Hefei 230031, P. R. China.

出版信息

Phys Chem Chem Phys. 2024 Jan 3;26(2):1396-1405. doi: 10.1039/d3cp03854h.

Abstract

Intrinsic magnetic semiconductors hold great promise in the fields of fundamental magnetization and spintronics. One such semiconductor is CrSiTi (CST), a quasi two-dimensional (2D) magnetic semiconductor with potential applications in future magnetic devices. However, the origin of ferromagnetism in CST remains a mystery. To investigate this, ac/dc susceptibility and electronic spin resonance (ESR) measurements were conducted. Based on ac susceptibility scaling, the critical temperature () for the ferromagnetic (FM) to paramagnetic (PM) phase transition was found to be ∼32.5 K, with a critical exponent of = 6.7 from the critical isotherm, + = 1.72 from the temperature dependence of the crossover line, and = 1.43 from the temperature dependence of susceptibility along the same line. All critical exponents were found to be consistent with the dc magnetization scaling method. However, above and below , the origin of magnetism cannot be explained by a single theory. To explore the origin of abnormal magnetic critical behavior, ESR measurements were performed. Below * ∼ 130 K, the ESR measurements revealed that the resonance field width (Δ) tends to increase and decrease for the applied magnetic field parallel and perpendicular to the axis, respectively, indicating the onset of magnetic interaction even in the PM state. Meanwhile, the deviation from Curie-Weiss behavior below * also confirmed the occurrence of magnetic correlation above the in CST. These observations suggest that the competition and cooperation among the direct and indirect interactions, the structural distortion and the van der Waals interaction at high temperature should be considered to investigate the origin of anomalous magnetism in CST. The present results provide valuable insights into the nature of ferromagnetism in 2D magnetic semiconductors.

摘要

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