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1 Introduction
1.1 Look Back on Optical Digital Data Storage
1.1.1 Progress of Digital Data Storage
1.1.2 From VCD to Blu-Ray Disc
1.2 Research and Development of Optical Storage in China
1.2.1 Multi-wavelength and Multilevel Storage
1.2.2 Volume Holographic Storage
1.2.3 Near-Field Optical Storage
1.2.4 Big Data Storage System Integration
1.2.5 New Storage Materials and Medium
1.2.6 Chinese Blue High Density Disc
1.3 The Advanced Efforts for Multi-dimension Optical Storage
1.3.1 3-Dimension (3D) Optical Storage
1.3.2 5-Dimensional Optical Storage
1.3.3 Negative Refraction Index Materials Application
to SIL 3-Dimensional Storage
1.3.4 The Higher Order Radially Polarized Beams
Application in SIL
1.3.5 Other Schemes for Multi-value Optical Storage
1.4 Frontier Science and Technologies Related to Optical Storage..
1.4.1 Ultraviolet Optical Storage
1.4.2 Plasmonic Optical Storage
1.4.3 X-Ray Storage
1.4.4 Nanoprobe and Molecular Polymer Storage
1.4.5 Molecular Polymer Storage
1.4.6 Persistent Spectral Holeburning
1.4.7 Coherent Transient Memory
1.4.8 Molecular Storage
1.4.9 All-Optical Magnetic Recording
1.4.10 Electronic Quantum Holography
1.4.11 Scanning Electron Beam Record
1.4.12 3D Integration Solid State Memory
1.4.13 Spintronics Data Storage
1.4.14 Two-Photon 3D Optical Memory
1.4.15 Macromolecular Data Storage
1.4.16 3D Micron Ships Phase-Change Memory
1.4.17 Compositive Application of the Different Principles..
1.5 Big Data Storage and Application
1.5.1 Cloud Storing
1.5.2 EB-Scale Distributed Storage
1.5.3 Air Traffic Management
1.5.4 Data Exploitation and Communications (DEC)
1.5.5 China Knowledge Resource Integrated Database
References
2 Mechanism of Multidimensional Optical Storage
2.1 Photophysics and Photochemistry
2.1.1 Light Absorption
2.1.2 Luminescence
2.2 Photoinduced Electron Transfer Process
2.2.1 Emission Lifetime