首页> 外文会议>ASME conference on information storage and processing systems >LIFE ESTIMATION OF CARBON OVERCOAT ON MAGNETIC MEDIA FOR HEAT-ASSISTED MAGNETIC RECORDING USING NOVEL RAMAN SPECTROSCOPY
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LIFE ESTIMATION OF CARBON OVERCOAT ON MAGNETIC MEDIA FOR HEAT-ASSISTED MAGNETIC RECORDING USING NOVEL RAMAN SPECTROSCOPY

机译:新型拉曼光谱在磁辅助热记录磁性介质上碳包覆层寿命估算

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A heat-assisted magnetic recording (HAMR) is expected for a future high density recording of a hard disk drive. However, a carbon overcoat (COC) composed of diamond-like carbon (DLC) or a lubricant film is possibly damaged when a magnetic medium, i.e. CoPt alloy, is heated at around Curie temperature (Tc) of 600K by a near-field HAMR head. We carried out HAMR simulation experiments by using newly developed Raman spectroscopic systems, composed of plasmonic sensors for surface-enhanced Raman scattering (SERS), a pulsed laser heating, and an in-situ temperature measurement with an intensity ratio of anti-Stokes/Stokes lines. It was found that the heated temperature of the COC is higher than that of the magnetic film, i.e., 580 °C and 366 °C, respectively. Intensity changes of G-band peak in Raman spectra for DLC films were observed during the pulsed laser heating. The Raman intensity was exponentially decreased by oxidation in air, where time constants were calculated as a parameter of a pulse width. Degradation life of the DLC film can be estimated from a critical pulse width, where the time constant is extrapolated to zero. The estimated pulse width for no degradation was 250μs at the heating temperature of 580 °C. The result shows no damage can be estimated in DLC films for HAMR because the effective irradiation time is 5ns and the accumulated irradiation time is 0.5ms in HAMR operations.
机译:预期热辅助磁记录(HAMR)可用于硬盘驱动器的未来高密度记录。但是,当磁性介质(即CoPt合金)被近场HAMR加热到居里温度(Tc)约为600K时,可能会损坏由类金刚石碳(DLC)或润滑膜组成的碳涂层(COC)。头。我们使用新开发的拉曼光谱系统进行了HAMR模拟实验,该系统由用于表面增强拉曼散射(SERS)的等离子体传感器,脉冲激光加热和强度与反斯托克斯/斯托克斯强度比的原位温度测量组成线。发现COC的加热温度高于磁性膜的加热温度,即分别为580℃和366℃。在脉冲激光加热过程中,观察到了DLC薄膜的拉曼光谱中G谱带峰的强度变化。拉曼强度由于在空气中的氧化而呈指数下降,其中时间常数被计算为脉冲宽度的参数。 DLC薄膜的降解寿命可以根据临界脉冲宽度估算,其中时间常数外推为零。在580°C的加热温度下,不降级的估计脉冲宽度为250μs。结果表明,由于在HAMR操作中有效辐照时间为5ns,累计辐照时间为0.5ms,因此无法估计DLC膜对HAMR的损坏。

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