By Vladimír Sechovský, Martin Diviš, Ladislav Havela, Fuminori Honda, Karel Prokeš (auth.), A. Gonis, N. Kioussis, M. Ciftan (eds.)
ISBN-10: 1441933921
ISBN-13: 9781441933928
ISBN-10: 1475737602
ISBN-13: 9781475737608
This is the second one in a sequence of "International Workshops on Electron Correlations and fabrics homes. " the purpose of this sequence of workshops is to supply a periodic (triennial) and in-depth evaluation of advances within the examine and realizing of the consequences that electron-electron interactions in solids have at the choice of measurable homes of fabrics. The workshop is dependent to incorporate publicity to experimental paintings, to phenomenology, and to ab initio idea. in view that correlation results are pervasive the workshop goals to be aware of the identity of promising constructing technique, experimental and theoretical, addressing the main severe frontier problems with electron correlations at the homes of fabrics. This sequence of workshops is exclusive from different topical conferences and meetings in that it strongly promotes an interdisciplinary method of the examine of correlations, regarding the fields of quantum chemistry, physics, and fabrics technology. the 1st Workshop was once held June 28-July three, 1998, and a court cases of the workshop used to be released by way of KluwerlPlenum. the second one Workshop was once held June 24- 29,2001, and this quantity comprises the complaints of that clinical assembly. in the course of the courses of complaints, the workshop makes an attempt to disseminate the data accrued through the discussions held on the Workshop to the broader medical neighborhood, and to set up a list of advances within the field.
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Figure lId. FMR spectrum of the patterned film of Fig. 22 for various orientations of the applied magnetic field in the film plane. After [17]. Permalloy Grid 360' 20 18 -:- 16 .!. 000 Applied Field (Oe) Figure 26. 8 /-Lm width. After [17] . Figure 27. Schematic drawing (topright) of antidot lattice topology (not to scale) . After [17] . 625 2 3 4 5 6 Microns Figure 28. AFM topography of the film described in Fig. 26, showing thickness modulations (see gray scale in A). After [17J . 4. SUPERCONDUCTIVITY AS A PROBE OF MAGNETISM The superconducting state is unique, in that it exhibits macroscopic quantum coherence that has made possible key advances in technology, including the production of very high magnetic fields and SQUIDs.
L. J. Billinge and M. F. Thorpe, eds, Plenum, New York, pp. 1-21. Elliott, R. 0, 1970, unpublished. , 1999, Thermophysical Propenies of Materials, revised edition, Elsevier, Amsterdam, p. 89. Hecker, Siegfried S. , 2000, A tale of two diagrams, in Challenges in Plutonium Science, op. , pp. 244-251. , 2000, Plutonium and its alloys - from atoms to microstructure, in Challenges in Plutonium Science, op. , pp. 290-335. Holden, A. , 1958, Physical Metallurgy of Uranium, Addison-Wesley, Reading MA, p 47.
Feature composition, shape, dimensions and structural defects, can all strongly affect dynamic magnetic response and device performance. For example, recent work indicates that shape anisotropy imposes constraints on magnetization and domain distributions inside an isolated magnetic dot (see Figs. 1 - 4), whereas the direction of the total moment and the dynamics of switching and stability are strongly influenced by the interactions between dots in relatively dense arrays [1-4]. Much more research needs to be done to follow up these results, especially wherever feature sizes can be continuously varied from the micron- to nano-scales.
Electron Correlations and Materials Properties 2 by Vladimír Sechovský, Martin Diviš, Ladislav Havela, Fuminori Honda, Karel Prokeš (auth.), A. Gonis, N. Kioussis, M. Ciftan (eds.)
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