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Thermal stability of recorded information at high densities

IEEE Transactions on Magnetics · 1997 · Vol. 33(1) · pp. 978–983
S. H. CharapPu-Ling LuYanjun He

Abstract

Simulations have been carried out with the purpose of identifying the thermal stability limits on data storage density in longitudinal recording on thin film media. The simulations use a combination of molecular dynamics based upon the Landau-Lifshitz-Gilbert equation of motion and a Monte Carlo method for dealing with magnetic viscosity. Based upon the limits on media coercivity imposed by available heads and SNR considerations, but assuming that sufficient head resolution can be achieved, an upper bound of about 36 Gbit/in./sup 2/ is projected.

Magnetic properties of thin filmsTheoretical and Computational PhysicsMagnetic Properties and ApplicationsMonte Carlo methodCoercivityViscosityStability (learning theory)ThermalMagnetic storageStatistical physicsComputational physicsPhysicsMaterials science
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References
A new algorithm for Monte Carlo simulation of Ising spin systems
Journal of Computational Physics · 1975 · 2,355 citations
Superparamagnetism
Journal of Applied Physics · 1959 · 1,741 citations
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