ADDING ELEMENTS TO THE CO LAYER IN CO PT MULTILAYERS/
Citation
S. Hashimoto, ADDING ELEMENTS TO THE CO LAYER IN CO PT MULTILAYERS/, Journal of applied physics, 75(1), 1994, pp. 438-441
Categorie Soggetti
Physics, Applied
SICI code
0021-8979(1994)75:1<438:AETTCL>2.0.ZU;2-R
Abstract
In order to determine which elements added to the Co layer in Co/Pt mu
ltilayers will reduce the Curie temperature with no significant decrea
se in the Kerr rotation angle, the magneto-optical (MO) properties of
(Co(1-x)M(x))/Pt (M:additional elements) multilayers were studied, tak
ing into account the change in MO properties brought about by varying
Pt layer thickness while maintaining Co layer thickness. The addition
of any element simultaneously decreases Curie temperature T-c and Kerr
rotation angle almost proportionately to the reduction in saturation
magnetization M(s). The perpendicular magnetic anisotropy energy K-u a
lso declines with the addition of another element, but for Ni, Fe, and
Tb the change is small. The ratio Q of K-u toetization energy, which
represents the effective perpendicular magnetic anisotropy, degrades w
ith X, due to the enlargement of M(s) for Fe-added films, while Ni and
Tb preserve a large e. Although the Tbstructure above X=0.2, Ni and F
e hardly change the structure even if added in large amounts. As a res
ult, the addition of Ni can control MO properties, keeping large effec
tive perpendicular magnetic anisotropy without influencing the structu
re. (Co,Ni)/Pt films possess lower T-c than Co/Pt films with the same
M(s), and the disks using (Co,Ni)/Pt films achieved higher write sensi
tivity and higher write/erase cyclability owing to the lower T-c than
Co/Pt disks with the same carrier-to-noise ratio. It would seem, there
fore, that (CoNi)/Pt multilayers are more promising for practical MO d
isks.