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Titlebook: Spin Electronics; David D. Awschalom,Robert A. Buhrman,Michael L. Ro Book 2004 Springer Science+Business Media Dordrecht 2004 Rain.basic r

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Robert A. Buhrmansed to study analytically the classical double cantilever beam specimen. This permits to predict the external loads leading to delamination in pure mode I or pure mode II [2]..From a mathematical point of view, proof of the existence of a solution of both problems is given [3].
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James M. Daughtonregimens for improvement of bone mass. In addition it has become clear from clinical studies that exercise which fails to increase bone mass may still reduce the risk of fractures in osteoporotic individuals. This is because the increased muscle power and coordination which accompany increased fitne
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regimens for improvement of bone mass. In addition it has become clear from clinical studies that exercise which fails to increase bone mass may still reduce the risk of fractures in osteoporotic individuals. This is because the increased muscle power and coordination which accompany increased fitne
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of knowledge, but seldom does it record events that constitute paradigm shifts in broad areas of intellectual pursuit. One notable exception, however, is that of spin electronics (also called spintronics, magnetoelectronics or magnetronics), wherein information is carried by electron spin in additio
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,Spin Electronics — Is It the Technology of the Future?,aches current spintronics research is taking, as detailed in this report, bear testament to its future value. Two recent discoveries have rekindled interest in the utility of semiconductors as both sources and carriers of spin information. The first of these, by Awschalom and coworkers (Awschalom an
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Materials for Semiconductor Spin Electronics,ipulated, and another interface beyond which the coherence and direction of the spins may be detected. Although spin injection and detection have been demonstrated by optical techniques (see Chapter 5) in order to produce an all electronic device, the ferromagnetic injector and detector must be mate
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Fabrication and Characterization of Magnetic Nanostructures,ovides the capability to observe, control, and engineer magnetic phenomena at the nanoscale. This, in turn, is enabling the creation of entirely new magnetic materials and spintronic devices (Wolf et al. 2001; Prinz 1998).
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