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Noise reduction mechanisms in laminated antiferromagnetically coupled recording media
Journal article   Peer reviewed

Noise reduction mechanisms in laminated antiferromagnetically coupled recording media

S N Piramanayagam, J P Wang, C H Hee, S I Pang, T C Chong, Z S Shan and L Huang
Applied physics letters, Vol.79(15), pp.2423-2425
08/10/2001

Abstract

Physical Sciences Physics Physics, Applied Science & Technology
Experimental methods to obtain remnant moment-thickness product (M(r)delta) reduction in the laminated antiferromagnetically coupled (LAC) recording media is described. The results indicate that the reduction in M(r)delta (or, indirectly, a reduction in noise) can be obtained by altering the antiferromagnetic coupling constant J, or by the parameters of the underlayer such as anisotropy constant (K-u2), thickness (t(2)), etc. A method to enhance J by intrinsic means is proposed by which a high exchange field of about 1900 Oe can be obtained. Thermal energy has been found to help in obtaining a M(r)delta reduction in LAC media. Substrates with lower surface roughness also enhance the M(r)delta reduction. (C) 2001 American Institute of Physics.

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