Thermal processes and stability of longitudinal magnetic recording media
- 1 January 1999
- journal article
- Published by Institute of Electrical and Electronics Engineers (IEEE) in IEEE Transactions on Magnetics
- Vol. 35 (5) , 2808-2813
- https://doi.org/10.1109/20.800990
Abstract
Thermally activated magnetization reversal processes in longitudinal magnetic recording media are the origin of signal decay and time dependence of the coercivity. The former may limit the lifetime of the stored data and the latter determines the minimal write fields at short pulse widths. Both effects depend on the ratio of the reversal barrier and the thermal energy. Signal decay and time dependent coercivity measurements are combined in this paper to experimentally derive a stability ratio, 1/C, as a function of film thickness, recording density and temperature. The experiments are performed with a contact write/read tester using a merged read/write head in physical contact with the sample. Samples are mounted on a variable temperature stage (300-390 K) allowing to vary the stability ratios. The samples are a series of CoPtCr recording media with thicknesses from 5.5 nm to 13.0 nm. In the low density limit (500 fc/mm) the onset of thermal decay is observed near (1/C)/sub 9//spl ap/38.Keywords
This publication has 25 references indexed in Scilit:
- 10 Gbit/in.2 longitudinal media on a glass substrate (invited)Journal of Applied Physics, 1999
- Dynamic coercivity measurements in thin film recording media using a contact write/read testerJournal of Applied Physics, 1999
- Spin-stand measurements of time and temperature dependence of magnetic recordingsJournal of Applied Physics, 1999
- Signal to noise ratio scaling and density limit estimates in longitudinal magnetic recordingIEEE Transactions on Magnetics, 1998
- Thermal Stability and Nanostructure of CoCrPt Longitudinal Recording MediaPublished by Institute of Electrical and Electronics Engineers (IEEE) ,1998
- Dynamic Coercivity and Thermal Decay of Magnetic MediaMRS Proceedings, 1998
- Scanning magnetoresistance microscopyApplied Physics Letters, 1996
- A scanning microscope using a magnetoresistive head as the sensing elementJournal of Applied Physics, 1996
- Determination of anisotropy field distribution in particle assemblies taking into account thermal fluctuationsPhysica Status Solidi (a), 1990
- A Study of Magnetic ViscosityProceedings of the Physical Society. Section A, 1949