DocumentCode :
39034
Title :
Effect of Size on Magnetic Properties of {\\hbox {NdMn}}_2{\\hbox {O}}_5 Nanorods
Author :
Chun-Chuen Yang ; Zhe-An Jian ; Yi-Jung Chen ; Yang-Yuan Chen
Author_Institution :
Dept. of Phys., Chung Yuan Christian Univ., Chung Li, Taiwan
Volume :
50
Issue :
1
fYear :
2014
fDate :
Jan. 2014
Firstpage :
1
Lastpage :
3
Abstract :
The effects of size on the magnetic properties of NdMn2O5 nanorods were studied by X-ray diffractometry, transmission electron microscopy, and measurements of magnetic susceptibility and hysteresis. Five types of nanorods with different axial lengths (〈LC〉)×diameters(〈LD〉)-68(36) nm×31(14) nm, 78(30) nm×33(8) nm, 95(36) nm×40(12) nm, 122(48) nm×54(16) nm, 249(46) nm×142(36) nm were made. The axial directions of the five types of nanorod were parallel to the c axis of the crystal. No particular radial direction is found. All samples crystallize with orthorhombic Pbam symmetry. Upon cooling, only the sample with 〈LC〉 = 249 nm occurs in ferrimagnetic and antiferromagnetic ordering at 80 K and 9 K, respectively. Hysteresis testing reveals a ferrimagnetic domain between 10 K and 50 K only in the 〈LC〉 = 249 nm sample. These tests reveal that the magnetic critical size of NdMn2O5 is between 〈LC〉 = 249 nm and 122 nm. For memory storage applications, the estimated maximal capacity of NdMn2O5 nanorods as upstanding pillars is about 32 Gbit/in2.
Keywords :
X-ray diffraction; antiferromagnetic materials; cooling; ferrimagnetic materials; magnetic domains; magnetic hysteresis; magnetic storage; magnetic susceptibility; nanomagnetics; nanorods; neodymium compounds; transmission electron microscopy; NdMn2O5; X-ray diffractometry; antiferromagnetic ordering; axial lengths; cooling; crystallization; ferrimagnetic domain; ferrimagnetic ordering; magnetic critical size; magnetic hysteresis; magnetic properties; magnetic susceptibility; maximal capacity; memory storage applications; nanorods; orthorhombic symmetry; temperature 10 K to 50 K; temperature 80 K; temperature 9 K; transmission electron microscopy; High definition video; Magnetic domains; Magnetic resonance imaging; Magnetometers; Nonhomogeneous media; Perpendicular magnetic anisotropy; Magnetic property; multiferroic; nanorod; size effect;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2013.2276591
Filename :
6693002
Link To Document :
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