DocumentCode :
952386
Title :
Magnetostriction of Dy-rich TbxDy1-x single crystals
Author :
Spano, M.L. ; Clark, A.E. ; Wun-Fogle, M.
Author_Institution :
US Naval Surface Warfare Center, Silver Spring, MD, USA
Volume :
25
Issue :
5
fYear :
1989
fDate :
9/1/1989 12:00:00 AM
Firstpage :
3794
Lastpage :
3796
Abstract :
Magnetostriction and differential scanning calorimetry measurements were conducted on the TbxDy1-x alloy system for 0.33⩾x⩾0. The magnetostriction measurements extend from 80 K to 300 K and cover the ferromagnetic, antiferromagnetic spiral, and paramagnetic temperature regions with fields of 6-20 kOe. From the data the authors derive the two lowest order magnetostriction constants, λγ.2 and λγ.4, as well as the basal plane anisotropy, K 66. At 80 K, λγ.2>7×10-3 for all alloys. While λγ.2 is almost independent of alloy concentration (except at high temperatures), λγ.4 decreases substantially with increasing Dy concentration, approaching zero for 0.17>x>0. As reported previously, the basal plane anisotropy was found to compensate at temperatures below 100 K in the x=0.67 and 0.50 alloys. This compensation is found to occur at higher temperatures in the x=0.33 and 0.17 alloys. The temperatures at which this occurs are presented in a magnetic phase diagram along with the calorimetrically determined Curie and Neel temperatures
Keywords :
Curie temperature; Neel temperature; antiferromagnetic properties of substances; dysprosium alloys; ferromagnetic properties of substances; magnetic anisotropy; magnetostriction; paramagnetic properties of substances; terbium alloys; thermal analysis; 80 to 300 K; Curie temperature; Neel temperatures; TbxDy1-x single crystals; antiferromagnet; basal plane anisotropy; compensation; differential scanning calorimetry; ferromagnet; magnetic phase diagram; magnetostriction; magnetostriction constants; paramagnet; Anisotropic magnetoresistance; Antiferromagnetic materials; Calorimetry; Magnetic anisotropy; Magnetic field measurement; Magnetostriction; Paramagnetic materials; Perpendicular magnetic anisotropy; Spirals; Temperature;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/20.42435
Filename :
42435
Link To Document :
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