DocumentCode :
1566984
Title :
Dynamics of transition writing in antiferromagnetically coupled magnetic recording media
Author :
Schabes, M.E.
Author_Institution :
IBM Almaden Res. Center, San Jose, CA, USA
fYear :
2002
Abstract :
Summary form only given. Antiferromagnetically coupled (AFC) media are an important extension of longitudinal magnetic recording to high bit densities while maintaining thermal stability. In this paper micromagnetic calculations examine the writing of isolated transitions in the top and bottom layers of a double layer AFC medium as a function of bottom layer thickness and interfacial exchange coupling at pico second time resolution. It is demonstrated that there can be a significant difference between the switching time of the top layer and the time required for completing the bottom layer magnetization processes during writing. The AFC media are modeled as two granular epitaxial films with grain diameters of 8 nm and grain boundary thickness of 1 nm. The thickness of the top layer is kept fixed at 15 nm while the bottom layer thickness is varied from 1 nm to 9 nm. The interfacial AF coupling between top and bottom layer is studied in the range of 0.1 to 0.5 erg/cm/sup 2/. The dynamic Langevin equations are solved for these films at a temperature of 350 K. A magnetic write head flying at 14 nm is used to write isolated transitions with a record current rise time of 100 ps (zero-to-peak).
Keywords :
antiferromagnetism; digital magnetic recording; grain boundaries; magnetic epitaxial layers; magnetic multilayers; magnetic switching; magnetisation; storage media; 1 to 15 nm; 100 ps; 350 K; antiferromagnetically coupled media; bottom layer magnetization processes; bottom layer thickness; double layer AFC medium; dynamic Langevin equations; granular epitaxial films; interfacial antiferromagnetic coupling; interfacial exchange coupling; magnetic recording media; micromagnetic calculations; pico second time resolution; switching time; transition writing dynamics; Antiferromagnetic materials; Automatic frequency control; Couplings; Magnetic recording; Magnetic switching; Magnetization processes; Micromagnetics; Semiconductor process modeling; Thermal stability; Writing;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Magnetics Conference, 2002. INTERMAG Europe 2002. Digest of Technical Papers. 2002 IEEE International
Conference_Location :
Amsterdam, The Netherlands
Print_ISBN :
0-7803-7365-0
Type :
conf
DOI :
10.1109/INTMAG.2002.1000951
Filename :
1000951
Link To Document :
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