Super-Resolution Near-Field Phase Change Disk with Sb_<70>Te_<30> Mask Layer
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概要
- 論文の詳細を見る
- Published by the Japan Society of Applied Physics through the Institute of Pure and Applied Physicsの論文
- 2004-07-30
著者
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SHI Luping
Data Storage Institute, DSI building
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Shi L
Data Storage Inst. Singapore
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LI Jianming
Data Storage Institute
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TAN Pik
Data Storage Institute
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Shi L
Data Storage Institute
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Tan P.
Data Storage Inst. Singapore
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Chong Towchong
Data Storage Institute
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HU Xiang
Data Storage Institute
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MIAO Xiangshui
Data Storage Institute
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YUAN Hongxing
Data Storage Institute
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YAO Haibiao
Data Storage Institute
関連論文
- Thickness Dependent Nano-Crystallization in Ge_2Sb_2Te_5 films and Its Effect on Devices
- Thermal Lithography for 100-nm Dimensions Using a Nano-Heat Spot of a Visible Laser Beam : Instrumentation, Measurement, and Fabrication Technology
- Study of the Dynamic Crystallization Behavior of GeSbTe Phase Change Optical Disk
- Rewritable Dual-Layer Initialization-Free Phase-Change Optical Disk
- Optical Transition of Chalcogenide Phase-Change Thin Films
- Multispeed Superlattice-Like Phase Change Optical Disk
- Temperature Dependence of Phase Change Random Access Memory Cell
- Enhanced Scattering of Random-Distribution Nanoparticles and Evanescent Field in Super-Resolution Near-Field Structure
- Initialization-Free Blue-Laser Optical Disc
- Substrate Deformation Studies on Direct Overwriting of Phase-Change Rewritable Optical Disc with Germanium Nitride Interface Layers
- New Improvement Methods for Multispeed Initialization-Free Phase-Change Optical Disk
- Integrated Thermal and Optical Analyses of Phase-Change Optical Disk
- Properties and Reactive Sputtering Parameters of GeN Film for High-Density Phase-Change Optical Disk
- New Approach to Initialization-Free Phase-Change Optical Disk
- Fractal-Based Studies on Irregular Marks of High-Density Phase-Change Optical Media
- Superlattice-Like Structure for High Recording Speed Phase Change Optical Discs
- New Additional Layer to Realize Initialization-Free Function for Digital Versatile Disk-Random Access Memory Disk
- Study of the Partial Crystallization Properties of Phase-Change Optical Recording Disks
- Dependence of Optical Constants on Film Thickness of Phase-Change Media
- A New Structure of Super-Resolution Near-Field Phase-Change Optical Disk with a Sb_2Te_3 Mask Layer
- Three-Dimensional Thermal Modelling and Analysis of Near-Field Phase Change Optical Disks
- Study of the Superlattice-Like Phase Change Optical Recording Disks
- Study of the Multi-Level Reflection Modulation Recording for Phase Change Optical Disks
- Thermal Modeling of Grooved Phase Change Optical Recording Disk
- Simulation and Characteristics of Phase Change Optical Disk
- Investigation on Super-Resolution Near-Field Blu-Ray-Type Phase-Change Optical Disk with Sb_2Te_3 Mask Layer
- Super-Resolution Near-Field Phase Change Disk with Sb_Te_ Mask Layer
- New Structure of Dual-Layer Rewritable Phase-Change Optical Disc
- Elevated-Confined Phase-Change Random Access Memory Cells
- Plastic Deformation and Failure Analysis of Phase Change Random Access Memory
- Magnetic Field Induced by Various Input Beam Polarizations in All-Optical Magnetic Recording
- Computer-Aided Design and Analysis of Rewritable Phase-Change Optical Disk
- Initialization-Free Multispeed Blue Laser Optical Disc
- Investigation on Super-Resolution Near-Field Blu-Ray-Type Phase-Change Optical Disk with Sb2Te3 Mask Layer
- Initialization-Free Blue-Laser Optical Disc
- Near-Field Characteristics and Signal Enhancement of Super-Resolution Near-Field Structure Disk with Metal Nanoparticles
- Substrate Deformation Studies on Direct Overwriting of Phase-Change Rewritable Optical Disc with Germanium Nitride Interface Layers
- Super-Resolution Near-Field Phase Change Disk with Sb70Te30 Mask Layer
- Study of Recorded Mark Width Change with Laser Power in Heat-Assisted Magnetic Recording
- Multispeed Superlattice-Like Phase Change Optical Disk
- Temperature Dependence of Phase-Change Random Access Memory Cell
- Properties and Reactive Sputtering Parameters of GeN Film for High-Density Phase-Change Optical Disk
- New Improvement Methods for Multispeed Initialization-Free Phase-Change Optical Disk
- Rewritable Dual-Layer Initialization-Free Phase-Change Optical Disk
- Optical Transition of Chalcogenide Phase-Change Thin Films