This e-book offers an in-depth exposition of spin-stand microscopy of exhausting disk knowledge which is a brand new approach recently developed and extensively examined by the authors of the book. Spin-stand microscopy is the primary magnetic imaging method where imaging is performed ex-situ on a rotating disk mounted on a spin-stand. This technique is one of the quickest scanning-based mostly microscopy techniques. It's non-invasive and has nano-scale resolution. For these reasons, it gives distinctive capabilities for the visualization of magnetization patterns recorded on hard disks. This e-book is self-contained and it covers in ample particulars the fundamental details of magnetic knowledge storage know-how, the ideas and principle of spin-stand microscopy, its experimental implementations, in addition to its functions in exhausting disk diagnostics, imaging of overwritten patterns, computer forensics of onerous disk recordsdata, and data-dependent magnetic thermal relaxations of recorded magnetization patterns. This book will be a precious reference for the magnetic knowledge storage community, magnetic microscopy professionals in addition to engineers and scientists involved in pc information forensics, business information recovery, and the design of archival knowledge storage systems.
Key features:
- conceptual novelty of the method and the demonstration of its vast scope of applications
- detailed exposition of the principles of spin-stand magnetic microscopy
- comprehensive discussions of novel image reconstruction strategies
- demonstration of high decision spin-stand images of arduous disk data
- presentation of sector-by-sector ex-situ forensics of hard disk information
- in depth research of data-dependent thermal relaxations of magnetization patterns recorded on arduous disks
Key options:
- conceptual novelty of the method and the demonstration of its large scope of applications
- detailed exposition of the principles of spin-stand magnetic microscopy
- complete discussions of novel image reconstruction methods
- demonstration of excessive resolution spin-stand images of laborious disk information
- presentation of sector-by-sector ex-situ forensics of onerous disk information
- extensive studies of data-dependent thermal relaxations of magnetization patterns recorded on hard disks
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