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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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SPLEEM,e basis of SPLEEM (6.2). This is followed by a brief description of the experimental aspects of the method (6.3). The remaining part is devoted to the applications of SPLEEM mainly in the study of thin film systems (6.4). The final section (6.5) briefly summarizes the possibilities and limitations of the method.
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Book 2005sciplines, like physics, chemistry, and biology, that proposed the possibility of producing str- turesinthesub-micronrange. Theworldwideoperatingelectroniccompaniesrealized that this would open up new ?elds of application, and they proposed very challe- ing projects for the near future. Particularly
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Imaging Magnetic Microspectroscopy,crospectroscopy. In a PEEM, an electrostatic electron optics creates a magnified image of the secondary electron intensity distribution at the sample surface. When excited by soft X-rays, the image intensity can thus be regarded as a local electron yield probe of X-ray absorption. In XMCD, the measu
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Scanning Probe Methods for Magnetic Imaging,resent context, a magnetic property — at a certain lateral resolution. In the case of tomographic methods, a certain depth resolution is also required. Most frequently employed probe-sample interactions in magnetic imaging involve electron exchange and the analysis of the spin polarization, the refl
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Book 2005properties with high spatial resolution have undergone a renaissance. Aiming at s- tems in the range of some 10nm means that the analyzing techniques have to go beyond that scale in their resolving power. In parallel to the efforts in the commercial sector, a new branch has been established in basic
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