Kim M K, Moon J Y, Choi H Y, Oh S H, Lee N, Choi Y J
Department of Physics and IPAP, Yonsei University, Seoul 120-749, Korea.
J Phys Condens Matter. 2015 Oct 28;27(42):426002. doi: 10.1088/0953-8984/27/42/426002. Epub 2015 Oct 7.
We have successfully synthesized the series of the double-perovskite R2CoMnO6 (R = rare earth: La to Lu) single crystals and have investigated their magnetic properties. The ferromagnetic order of Co(2+)/Mn(4+) spins emerges mainly along the c axis. Upon decreasing the size of rare earth ion, the magnetic transition temperature decreases linearly from 204 K for La2CoMnO6 to 48 K for Lu2CoMnO6, along with the enhancement of monoclinic distortion. The temperature and magnetic-field dependences of magnetization reveal the various magnetic characteristics such as the metamagnetic transition in R = Eu, the isotropic nature of rare earth moment in R = Gd, and the reversal of magnetic anisotropy in R = Tb and Dy. Our results offer comprehensive information for understanding the roles of mixed-valent magnetic ions and rare earth magnetic moments on the magnetic properties.
我们已成功合成了一系列双钙钛矿型R2CoMnO6(R =稀土元素:从La到Lu)单晶,并对其磁性能进行了研究。Co(2+)/Mn(4+)自旋的铁磁序主要沿c轴出现。随着稀土离子尺寸的减小,磁转变温度从La2CoMnO6的204 K线性降低至Lu2CoMnO6的48 K,同时单斜畸变增强。磁化强度的温度和磁场依赖性揭示了各种磁特性,如R = Eu时的变磁转变、R = Gd时稀土磁矩的各向同性性质,以及R = Tb和Dy时磁各向异性的反转。我们的结果为理解混合价磁性离子和稀土磁矩在磁性能中的作用提供了全面信息。