La-Ba-Mn-O陶瓷材料的阻抗与巨磁阻抗研究
Investigation of Impedance and Giant Magnetoimpedance for La-Ba-Mn-O Ceramic Oxide
DOI: 10.12677/EAA.2014.31002, PDF, HTML, 下载: 2,917  浏览: 10,201  国家自然科学基金支持
作者: 王一非, 谢继浩, 刘 亮, 胡季帆:山东大学物理学院晶体材料国家重点实验室,济南
关键词: 阻抗磁阻抗锰氧化物Impedance; Magnetoimpedance; Manganite
摘要: 本文研究了1200℃退火10小时后得到的La0.65Ba0.35MnO3块状陶瓷材料在室温下的交流阻抗以及巨磁阻抗(GMI)效应。巨磁阻抗效应显示出了强烈的频率依赖关系。在室温下及H = 500 Oe的外加磁场下,样品可显示出很强的交流巨磁电阻、巨磁电抗、巨磁阻抗效应:DR/R0 = −25.1% (f = 20 MHz),DX/X0 = −22% (f = 100 kHz)以及DZ/Z0 = −17.4% (f = 9 MHz)。利用电磁理论结合铁磁学原理, 可对锰氧化物陶瓷材料阻抗与磁阻抗现象给出很好的物理理解。我们同时发现1200℃退火10小时后得到的La0.65Ba0.35MnO3块状陶瓷材料在f £ 20 MHz时,DZ/Z0随磁场单调下降,这说明该材料磁横向各向异性很小可忽略。DZ/Z0随磁场单调变化的特点有利于磁传感器的器件设计。
Abstract: In this paper, the impedance and magnetoimpedance for La0.65Ba0.35MnO3 sol-gel material annealed at 1200˚C for 10 h have been investigated at room temperature. This material shows the large giant magnetoimpedance (GMI) effect with strong fervency dependence. The material exhibits the ac magnetoresistance DR/R0 = −25.1% at f = 20 MHz, ac magnetoreactance DX/X0 = −22% at f = 100 kHz, and magnetoimpedance DZ/Z0 = −17.4% at f = 9 MHz under a weak magnetic field H = 500 Oe at room temperature. The impedance and magnetoimpedance effect can be well described with electrodynamics and ferromagnetism principle. We also find that La0.65Ba0.35MnO3 sol-gel material annealed at 1200˚C for 10 h shows a monotonic magnetoimpedance in the frequency range f £ 30 MHz, showing a weak and negligible transverse magneto-anisotropy field in the sample. Such monotonic GMI behavior is beneficial to the design of GMI magnetic sensor.
文章引用:王一非, 谢继浩, 刘亮, 胡季帆. La-Ba-Mn-O陶瓷材料的阻抗与巨磁阻抗研究[J]. 电磁分析与应用, 2014, 3(1): 7-12. http://dx.doi.org/10.12677/EAA.2014.31002

参考文献

[1] Von Helmolt, R., Wecker, J., Holzapfel, B., Schultz, L. and Samwer, K. (1993) Giant negative magnetoresistance in perovskitelike La2/3Ba1/3MnOx ferromagnetic films. Physical Review Letters, 71, 2331-2333.
[2] Jin, S., Tiefel, T.H., McCormack, M., Fastnacht, R.A., Ramesh, R. and Chen, L.H. (1994) Thousandfold change in resistivity in magnetoresistive La-Ca-Mn-O films. Science, 264, 413-415.
[3] Tokura, Y. (2000) Colossal magnetoresistive oxides. Gordon and Breach, New York.
[4] Zener, C. (1951) Interaction between the d-shells in the transition metals. II. Ferromagnetic compounds of manganese with perovskite structure. Physical Review, 82, 403-405.
[5] Millis, J., Littlewood, P.B. and Shraiman, B.I. (1995) Double exchange alone does not explain the resistivity of La1-xSrxMnO3. Physical Review Letters, 74, 5144-5147.
[6] Moreo, A., Yunoki, S. and Dagotto, E. (1994) Phase separation scenario for manganese oxides and related materials. Science, 283, 2034-2040.
[7] Hwang, H.Y., Cheong, S.-W., Ong, N.P. and Batlogg, B. (1996) Spin-polarized intergrain tunneling in La2/3Sr1/3MnO3. Physical Review Letters, 77, 2041-2044.
[8] Li, X.W., Gupta, A., Xiao, G. and Gong, G.Q. (1997) Low-field magnetoresistive properties of polycrystalline and epitaxial perovskite manganite films. Applied Physics Letters, 71, 11241126.
[9] Hu, J. and Qin, H. (2000) Magnetoimpedance effect in La0.67 Ba0.33MnO3 under low dc magnetic fields. Solid State Communication, 116, 159-162.
[10] Hu, J. and Qin, H. (2001) Magnetoimpedance effect in La0.7 Sr0.3MnO3. Journal of Magnetism and Magnetic Materials, 234, 419-422.
[11] Qin, H., Hu, J., Chen, J., Wang, Y. and Wang, Z. (2002) Giant magnetoimpedance and colossal magnetoresistance in La0.75Sr0.25 MnO3 at room temperature. Journal of Applied Physics, 91, 10003-10006.
[12] Hu, J., Qin, H., Niu, H.D., Zhu, L., Chen, J., Xiao, W. and Pei, Y. (2003) Magnetoimpedance effect in manganite La2/3Ba1/3MnO3 at various temperatures. Journal of Magnetism and Magnetic Materials, 261, 105-116.
[13] Chen, D.-X. and Muñoz, J.L. (1999) AC impedance and circular permeability of slab and cylinder. IEEE Transactions on Magnetics, 35, 1906-1923.
[14] Landau, L.D., Lifshitz, E.M. and Pitaevskii, L.P. (1995) Electrodynamics of continuous media. Butterworth-Heinemann, London.
[15] Hu, J., Wang, Y., Zhang, Y., Hua, L., Qin, H. and Li, B. (2011) Sample thickness dependence of giant magnetoimpedance under low fields for La0.67Sr0.33Mn0.98Co0.02O3 manganites. Journal of Alloys and Compounds, 509, 1360-1363.
[16] Hu, J., Qin, H., Li, B., Wang, Y. and Zhang, Y. (2011) Correlation between magnetoimpedance and permeability in La2/3Ba1/3 MnO3. Journal of Magnetism and Magnetic Materials, 323, 1185-1190.
[17] Phan, M.H. and Peng, H.X. (2008) Giant magnetoimpedance materials: Fundamentals and applications. Progress in Materials Science, 53, 323-420.