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多铁半导体 Eu(1-x)Ce(x)Mn2O5 的磁性。

Magnetic properties of multiferroics-semiconductors Eu(1-x)Ce(x)Mn2O5.

机构信息

A F Ioffe Physical Technical Institute, 26 Politekhnicheskaya, 194021, St. Petersburg, Russia.

出版信息

J Phys Condens Matter. 2011 Nov 16;23(45):456003. doi: 10.1088/0953-8984/23/45/456003. Epub 2011 Oct 28.

Abstract

Studies of magnetization, magnetoresistance, and magnetic oscillations in semiconductor-multiferroics Eu(1-x)Ce(x)Mn2O5 (x = 0.2-0.25) (ECMO) at temperatures ranging from 5 to 350 K in magnetic fields up to 6 T are presented. It is shown that phase separation and charge carrier self-organization in the crystals give rise to a layered superstructure perpendicular to the c axis. An effect of magnetic field cycling on the superstructure, magnetization, and magnetoresistance is demonstrated. X-ray diffraction studies of ECMO demonstrating the effect of magnetic field on the superstructure are presented. The de Haas-van Alphen magnetization oscillations in high magnetic fields and the temperature-induced magnetic oscillations in a fixed magnetic field are observed at low temperatures. Below 10 K the quantum corrections to magnetization due to the weak charge carrier localization in 2D superlattice layers occur. It is shown that at all the temperatures the Eu(1-x)Ce(x)Mn2O5 magnetic state is dictated by superparamagnetism of isolated ferromagnetic domains.

摘要

介绍了在磁场高达 6 T 的温度范围内从 5 K 到 350 K 的半导体多铁体 Eu(1-x)Ce(x)Mn2O5 (x = 0.2-0.25) (ECMO)的磁化、磁电阻和磁振荡的研究。结果表明,晶体中的相分离和载流子自组织导致了沿 c 轴垂直的层状超结构。证明了磁场循环对超结构、磁化和磁电阻的影响。提出了 ECMO 的 X 射线衍射研究,证明了磁场对超结构的影响。在低温下观察到了高磁场中的德哈斯-范阿尔芬磁化振荡和固定磁场中的温度诱导磁振荡。在 10 K 以下,由于二维超晶格层中载流子的弱局域化,磁化出现量子修正。结果表明,在所有温度下,Eu(1-x)Ce(x)Mn2O5 的磁状态都是由孤立铁磁畴的超顺磁性决定的。

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