中国物理B ›› 1996, Vol. 5 ›› Issue (7): 544-551.doi: 10.1088/1004-423X/5/7/009
• • 上一篇
胡伯平1, 王亦忠1, 李宏硕2, J. M. CADOGAN2, B. NASUNJILEGAL3, 杨伏明3, 朱建军3, 潘华勇3, 王建立3, 秦卫东3, 唐宁3
B. NASUNJILEGALa, YANG FU-MING (杨伏明)a, ZHU JIAN-JUN (朱建军)a, PAN HUA-YONG (潘华勇)a, WANG JIAN-LI (王建立)a, QIN WEI-DONG (秦卫东)a, TANG NING (唐宁)a, HU BO-PING (胡伯平)b, WANG YI-ZHONG (王亦忠)b, LI HONG-SHUO (李宏硕)c, J. M. CADOGANc
摘要: The novel Gd3(Fe0.978Ti0.022)29 compounds and their nitride have been synthesized. The X-ray diffraction patterns of the Gd3(Fe,Ti)29Ny and its parent compounds were indexed in the Nd3(Fe,Ti)29-type structure with a monoclinic symmetry and space group P21/c, Both the nitride and the parent compounds exhibit ferrimagnetlc coupling. Nitrogenatio led to an increase in Curie temperature and saturation magnetization. The Curie temperatures are 517K for the parent and 765K for the nitride. The saturation magnetizations σs at 4.2K are 101.9A·m2/kg for the parent and 128A·m2/kg for the nitride. Both the nitride and parent exhibit a planar anisotropy. Nitrogenation led to a decrease of the contribution of Fe-sublattice to planar anisotropy. The anisotropy fields at 4.2K are 9.8T for the parent and 6.5 T for the nitride.
中图分类号: (Magnetic phase boundaries (including classical and quantum magnetic transitions, metamagnetism, etc.))