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Quasicrystals: An Introduction to Structure, Physical Properties and Applications: Springer Series in Materials Science, cartea 55

Editat de J.-B. Suck, M. Schreiber, P. Häussler
en Limba Engleză Hardback – 23 iul 2002
Quasicrystals have been the object of intense research efforts for a good 16 years now. In recent years, this area of solid state physics and crystallogra­ phy has grown into a mature field in its own right. Hence, several books on quasicrystals have appeared in the interim (see Appendix) and chapters on quasicrystals have been introduced into new books on solid state physics and l into new editions of existing monographs. However, most of the former have been written for scientists specialised in this field rather than for students, and the latter additions are often rat her brief. We therefore decided to fill the gap between these two extremes with a book which provides an introduction to the structure and physical properties oi quasicrystals and covers, in sufficient detail, all important fields in qua­ sicrystal research and even applications. The chapters have been written by specialists and each is based on the author's insight into this field. Howe­ ver, much effort has been put into achieving an introductory character and making the text accessible to newcomers to the field.
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Specificații

ISBN-13: 9783540642244
ISBN-10: 3540642242
Pagini: 588
Ilustrații: XVIII, 564 p.
Dimensiuni: 155 x 235 x 37 mm
Greutate: 1 kg
Ediția:2002
Editura: Springer Berlin, Heidelberg
Colecția Springer
Seria Springer Series in Materials Science

Locul publicării:Berlin, Heidelberg, Germany

Public țintă

Research

Cuprins

1 Prehistory of Quasicrystals.- 2 A Guide to Mathematical Quasicrystals.- 3 Aperiodic Tilings on the Computer.- 4 Quasicrystallography.- 5 Experimental Determination of the Structure of Quasicrystalline Alloys: Experimental Techniques and Modeling.- 6 Electron Microscopy and Surface Investigations of Quasicrystals.- 7 Structure of Quasicrystals via Pair Potentials.- 8 Quasicrystals as Hierarchical Packing of Overlapping Clusters.- 9 Modeling Quasicrystal Growth.- 10 Production of Quasicrystalline Alloys and Phase Diagrams.- 11 Undercooling of Quasicrystal-Forming Liquid Alloys.- 12 Phasons, Dislocations, and Cracks.- 13 Defects.- 14 Ion Channeling in Quasicrystals.- 15 Mechanical Properties of Quasicrystals.- 16 Electronic Conductivity of Quasicrystals and Approximants.- 17 Electron Densities of States in Quasicrystals and Approximants.- 18 Electronic Transport Properties of Quasicrystalline Thin Films.- 19 Electron Transport in a Magnetic Field: A Landauer-Formula Approach.- 20 Phonons and Electrons in Quasicrystals.- 21 Computer Simulations of Lattice Dynamics in Quasicrystals.- 22 Experimental Determination of the Dispersion of Vibrations in Monodomain Quasicrystalline Alloys.- 23 Vibrational Density of States of Stable and Metastable Quasicrystalline Alloys.- 24 Thermodynamics of Quasicrystals.- 25 Magnetic Properties of Quasicrystals and Approximants.- 26 Bulk and Surface Properties of Quasicrystalline Materials and Their Potential Applications.- A Further Reading: Literature on Quasicrystals.

Textul de pe ultima copertă

This book provides a basic introduction to the structure and physical properties of quasicrystals, giving equal weight to experimental and theoretical progress. After introducing different aspects of tilings, including random tiling, the foundations of the crystallography of these aperiodic crystals is laid. The experimental investigation of the structure in real and reciprocal space is covered in detail, including high resolution electron microscopy, STM and AFM and electron-, X-ray- and especially neutron diffraction. The results of these experimental techniques are supplemented by the modelling of the atomic structure based on realistic ab initio pair interactions. A central role in aperiodic crystals is played by the electrons, which are most sensitive to the aperiodic atomic structure and are therefore discussed in detail:the surprising results of conduction measurements and the experimental investigation of the partial density of states for quasicrystals and their rational approximants are contrasted with the results from calculations of the electronic structure of quasicrystals. The vibrational properties of quasicrystalline alloys are extensively discussed on the basis of different computer simulations techniques and of the rich variety of experimental results obtained with mono- and polygrain quasicrystals and their approximants by neutron inelastic scattering. Likewise the magnetic properties of quasicrystalline alloys, which depend on the type of sample and show interesting transitions to different magnetic phases, are covered. The mechanical properties and the results from the investigation of defects in quasicrystals by experimental methods like electron microscopy and ion channeling and by extensive computer simulations of defects and fracture, which play a major role in the applications of quasicrystals, are presented. For the understanding of quasicrystal formation the properties of the undercooled liquid alloys, the details of the mostly extremely complicated phase diagrams, the reasons for the success of certain production techniques, the process of alloy growth, and the reasons for the stability of the non periodic crystal structure in competition with the periodic one must

Caracteristici

Includes supplementary material: sn.pub/extras