Title :
Recording at Large Write Currents on Obliquely Evaporated Medium and Application to a Multilevel Recording Scheme
Author :
Jubert, P.-O. ; Vanhaverbeke, A. ; Bischof, A. ; Allenspach, R.
Author_Institution :
IBM Res. - Almaden, San Jose, CA, USA
Abstract :
We have studied the recording process of an obliquely evaporated Co-CoO medium. The experimental readback waveforms and the spin-SEM images of the recorded magnetization reveal an interesting magnetization process upon increasing the write current in one of the two recording directions. With larger write currents, isolated readback pulses drastically change their shape and the remanent magnetization of the written domains decreases. We qualitatively reproduce this behavior using simple write models that include the three-dimensional (3-D) granular nature of the medium and a distribution of anisotropy axes for the evaporated Co grains. Based on these results, we propose a recording scheme in which a patterned multilevel tilted recording medium is used advantageously for 3-D magnetic recording.
Keywords :
cobalt; cobalt compounds; magnetic recording; magnetisation; scanning electron microscopy; 3D magnetic recording; Co-CoO; isolated readback pulses; magnetization recording; multilevel recording; obliquely evaporated medium; patterned multilevel tilted recording medium; readback waveforms; spin-SEM images; write current; Anisotropic magnetoresistance; Magnetic heads; Magnetic recording; Magnetization; Mercury (metals); Shape; Writing; Magnetic tape recording; magnetization reversal;
Journal_Title :
Magnetics, IEEE Transactions on
DOI :
10.1109/TMAG.2010.2083678