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Titlebook: Bond-Orientational Order in Condensed Matter Systems; Katherine J. Strandburg Book 1992 Springer-Verlag New York, Inc. 1992 Experiment.Met

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期刊全称Bond-Orientational Order in Condensed Matter Systems
影响因子2023Katherine J. Strandburg
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学科分类Partially Ordered Systems
图书封面Titlebook: Bond-Orientational Order in Condensed Matter Systems;  Katherine J. Strandburg Book 1992 Springer-Verlag New York, Inc. 1992 Experiment.Met
影响因子One of the most important aspects of solid materials is the regularity of the arrangement of the constituent molecules, that is, the long-range order. The focus of this book is on the contribution made by the ordering of bond orientations (as distinguished from the orientations of the molecules themselves) on the behavior of condensed systems, particularly their phase transitions. Examples in which bond-orientational effects play an important role are liquid crystals, quasicrystals, and two-dimensional crystals. This book contains contributions by many of the foremost researchers in the field. The chapters are tutorial reviews of the subject, written both for the active researcher looking for a review of a topic and for the graduate student investigating an exciting area of research. The contributions include an overview by J.D. Brock, Cornell; a discussion of computer simulation studies by K.J. Strandburg, Argonne; chapters on phase transition in hexatic liquid crystals by C.C. Huang, Minnesota and C.A. Murray, Texas A&M; and chapters on quasicrystals by S. Sachdev, Yale, M.V. Jaric, A.I. Goldman, Iowa State, and T.-L. Ho, Ohio State.
Pindex Book 1992
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Nature of Phase Transitions Related to Stacked Hexatic Phases in Liquid Crystals,tional and orientational order. These materials provide new thermodynamically stable phases and are excellent systems for studying melting processes, phase transitions, and critical phenomena. So far, more than 25 different mesophases have been identified among the liquid crystal compounds. Consider
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Icosahedral Ordering in Supercooled Liquids and Metallic Glasses,hile such random atomic arrangements are easy to achieve in materials with covalent bonding, until 1960 the solid state of all known metals and metallic alloys consisted of regular, periodic arrangements of the atoms. The first metallic glass was produced in 1960 by Duwez and co-workers [1] by rapid
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Orientational Order and Quasicrystals,anese whose electron diffraction pattern revealed a novel structure [1]. While the diffraction peaks were relatively sharp, indicating positional coherence on the order of several hundred angstroms, the pattern itself displayed a noncrystallographic, icosahedral orientational order. This discovery c
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Icosahedral Glass Models for Quasicrystals,ejudices about the relationship between positional order, bond-orientational order, and periodic translational order in condensed matter systems. Traditionally, we have grouped solids into two categories. Glasses are viewed as solids which, at best, can be characterized as having short-range chemica
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