Temperature distribution simulation of the optical magnetic hybrid recording media with super-resolution near-field structure[J]. Optics and precision engineering, 2008, 16(10): 1800-1804.
Temperature distribution simulation of the optical magnetic hybrid recording media with super-resolution near-field structure[J]. Optics and precision engineering, 2008, 16(10): 1800-1804.DOI:
In order to further reduce the recorded bit size of optical-magnetic hybrid recording
Super-resolution near-field structure (Super-RENS) thin film model
near-field optics model and temperature field model were built for optical-magnetic hybrid recording media. Finite element method was used to simulate the temperature distribution of the recording layer of Super-RENS hybrid recording media. The layer structure of hybrid recording media was C(2nm)/Sb(10nm)/SiN(10nm)/Co75Cr15Pt10(30nm). When the writing temperature was 550K
the temperature writable area of hybrid recording media increased with the laser power. When laser power increased from 3.9mw to 6.9mw
the sizes of temperature writable area in both vertical and horizontal directions doubled and the areal recording density decreased to a quarter.