中国物理B ›› 2008, Vol. 17 ›› Issue (7): 2721-2724.doi: 10.1088/1674-1056/17/7/061
邢茹1, 鲁毅1, 浩斯巴雅尔1, 赵明宇1, 金香1, 郑琳1, 赵建军2, 孙阳3, 宁伟4, 成昭华4
Zhao Jian-Jun(赵建军)a)b)†, Xing Ru(邢茹)a), Lu Yi(鲁毅)a), Haosibayar(浩斯巴雅尔)a), Zhao Ming-Yu(赵明宇)a), Jin Xiang(金香)a), Zheng Lin(郑琳)a), Ning Wei(宁伟)b), Sun Young(孙阳)b), and Cheng Zhao-Hua(成昭华)b)
摘要: We have performed magnetization measurements and electron spin resonance (ESR) on polycrystalline manganites of Nd$_{0.5}$Sr$_{0.5 - x}$Ba$_{x}$MnO$_{3}$ ($x = 0.1$). Phase separation and phase transitions are observed from the susceptibility and the ESR spectra data. Between 260\,K ($\sim T_{\rm C})$ and 185\,K ($\sim T_{\rm N})$, the system coexists of the paramagnetic phase and the ferromagnetic (FM) phase. Between 185\,K and 140\,K, the system coexists of the FM phase and the antiferromagnetic (AFM) phase. These results indicate that the system has a very complex magnetic state due to the origin of the instability stemming from manganite Nd$_{0.5}$Sr$_{0.4}$Ba$_{0.1}$MnO$_{3}$ by partially substituting the larger Ba$^{2 + }$ ions for the smaller Sr$^{2 + }$ ions.
中图分类号: (Magnetization curves, hysteresis, Barkhausen and related effects)