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Titlebook: Magnetic Microscopy of Nanostructures; Herbert Hopster,Hans Peter Oepen Book 2005 Springer-Verlag Berlin Heidelberg 2005 Magnetic domains.

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Electron Holography of Magnetic Nanostructures,aching the nanometer scale. The theoretical background and usual experimental setup for electron holography are first briefly described. Applications of the technique to magnetic materials and nanostructures are then discussed in more detail. Future prospects are summarized.
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978-3-642-07286-4Springer-Verlag Berlin Heidelberg 2005
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Magnetic Microscopy of Nanostructures978-3-540-26641-9Series ISSN 1434-4904 Series E-ISSN 2197-7127
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Spin-SEM of Storage Media,n-SEM is advantageous to the study of these recording media, since it can detect the three components of the magnetization vector with a spatial resolution of several nanometers. In this chapter, I review how the spin-SEM contributes to increasing the recording density of various recording media.
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,Magnetic Force Microscopy — Towards Higher Resolution,olution, the tip-sample distance has to be small, and methods of tip-sample distance control are discussed. Finally, generations of MFM tips are treated, including a full silicon micromachined design, which eventually might take the resolution of MFM below 10 nm..
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Time Domain Optical Imaging of Ferromagnetodynamics, simultaneously all three components of the magnetization vector. This technique allows direct insight into the spatiotemporal evolution of dynamic processes, including ferromagnetic resonance and magnetization reversal in small magnetic elements.
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Lorentz Microscopy,a description of the instrumental and specimen requirements is included, and in the final section, the application of the various techniques to the study of spin-valve and spin-tunnel junction layered structures is discussed as a means of illustrating the type of information that can be obtained.
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