SOLID IMMERSION LENS AND MAGNETIC FIELD MODULATION FOR HIGH DENSITY MO RECORDING (光記録・情報記録材料)
スポンサーリンク
概要
- 論文の詳細を見る
A near field optical technique based on combined supersphere solid immersion lens(SIL)with magnetic field modulation(MFM)recording is described for high density magneto-optical recording. The analysis of read-write performance of this system has been developed in this paper. A better resolution has been achieved by using SIL with MFM recording in comparison with light intensity modulation(LIM). We found that recorded mark of 0.3 μm × 0.2 μm could be obtained. These marks were readout by the SIL head with a typical signal to noise ratio value of 36 dB. The present study demonstrated the capability to achieve a very high areal density beyond 20 Gb / in^2
- 一般社団法人電子情報通信学会の論文
- 2000-03-07
著者
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SUZUKI T.
Information Storage Materials Laboratory, Toyota Technological Institute
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Itoh Y.
Toyota Technological Institute
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Itoh Y.
Information Storage Materials Laboratory Toyota Technological Institute
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Sbiaa R.
Information Storage Materials Laboratory Toyota Technological Institute
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Stavrou E.
Information Storage Materials Laboratory Toyota Technological Institute
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Chekanov A.
Information Storage Materials Laboratory Toyota Technological Institute
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Birukawa M.
Information Storage Materials Laboratory Toyota Technological Institute
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CHEKANOV A.
Toyota Technological Institute
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BIRUKAWA M.
Toyota Technological Institute
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R. Sbiaa
Isml Toyota Technological Institute
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Sbiaa R.
Information Storage Materials Laboratory
関連論文
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- MAGNETIC VISCOSITY AND STABILITY OF MAGNETO-OPTICAL RECORDING MEDIA (光記録・情報記録材料)
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- SOLID IMMERSION LENS AND MAGNETIC FIELD MODULATION FOR HIGH DENSITY MO RECORDING
- SOLID IMMERSION LENS AND MAGNETIC FIELD MODULATION FOR HIGH DENSITY MO RECORDING (光記録・情報記録材料)
- SOLID IMMERSION LENS AND MAGNETIC FIELD MODULATION FOR HIGH DENSITY MO RECORDING
- SOLID IMMERSION LENS AND MAGNETIC FIELD MODULATION FOR HIGH DENSITY MO RECORDING
- Magnetic Field Modulation MO-recording using SIL.
- Issues in Determining Activation Volume in Magnetic Recording Media
- Large Area Fabrication of Co Particles by Ion-Beam-Induced Chemical Vapor Deposition (IBICVD)
- Magnetic and magneto-optical properties for (Co_Fe_x)_Pt_ alloy thin films
- Characterization of Perpendicular Recording Media of CoPtCrO Granular Thin Films
- MFM Images and Micromagnetic Simulation of Submicron-Sized Single-Crystal Co particles