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Glassy disordered systems[electronic...
~
Klinger, Michael I.
Glassy disordered systems[electronic resource] :glass formation and universal anomalous low-energy properties /
Record Type:
Electronic resources : Monograph/item
[NT 15000414]:
620.144
Title/Author:
Glassy disordered systems : glass formation and universal anomalous low-energy properties // Michael I. Klinger.
Author:
Klinger, Michael I.
Published:
Singapore ; : World Scientific Publishing,, c2013.
Description:
1 online resource (xii, 326 p.) : : ill.
Subject:
Glass - Analysis.
ISBN:
9789814407489 (electronic bk.)
ISBN:
9814407488 (electronic bk.)
[NT 15000227]:
Includes bibliographical references (p. 315-324) and index.
[NT 15000229]:
The present book describes the fundamental features of glassy disordered systems at high temperatures (close to the liquid-to-glass transition) and for the first time in a book, the universal anomalous properties of glasses at low energies (i.e. temperatures/frequencies lower than the Debye values) are depicted. Several important theoretical models for both the glass formation and the universal anomalous properties of glasses are described and analyzed. The origin and main features of soft atomic-motion modes and their excitations, as well as their role in the anomalous properties, are considered in detail. It is shown particularly that the soft-mode model gives rise to a consistent description of the anomalous properties. Additional manifestations of the soft modes in glassy phenomena are described. Other models of the anomalous glassy properties can be considered as limit cases of the soft-mode model for either very low or moderately low temperatures/frequencies.
Online resource:
http://www.worldscientific.com/worldscibooks/10.1142/8496#t=toc
Glassy disordered systems[electronic resource] :glass formation and universal anomalous low-energy properties /
Klinger, Michael I.
Glassy disordered systems
glass formation and universal anomalous low-energy properties /[electronic resource] :Michael I. Klinger. - 1st ed. - Singapore ;World Scientific Publishing,c2013. - 1 online resource (xii, 326 p.) :ill.
Includes bibliographical references (p. 315-324) and index.
The present book describes the fundamental features of glassy disordered systems at high temperatures (close to the liquid-to-glass transition) and for the first time in a book, the universal anomalous properties of glasses at low energies (i.e. temperatures/frequencies lower than the Debye values) are depicted. Several important theoretical models for both the glass formation and the universal anomalous properties of glasses are described and analyzed. The origin and main features of soft atomic-motion modes and their excitations, as well as their role in the anomalous properties, are considered in detail. It is shown particularly that the soft-mode model gives rise to a consistent description of the anomalous properties. Additional manifestations of the soft modes in glassy phenomena are described. Other models of the anomalous glassy properties can be considered as limit cases of the soft-mode model for either very low or moderately low temperatures/frequencies.
ISBN: 9789814407489 (electronic bk.)Subjects--Topical Terms:
587548
Glass
--Analysis.
LC Class. No.: TA450 / .K55 2013
Dewey Class. No.: 620.144
Glassy disordered systems[electronic resource] :glass formation and universal anomalous low-energy properties /
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[electronic resource] :
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glass formation and universal anomalous low-energy properties /
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Michael I. Klinger.
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World Scientific Publishing,
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c2013.
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ill.
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Includes bibliographical references (p. 315-324) and index.
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The present book describes the fundamental features of glassy disordered systems at high temperatures (close to the liquid-to-glass transition) and for the first time in a book, the universal anomalous properties of glasses at low energies (i.e. temperatures/frequencies lower than the Debye values) are depicted. Several important theoretical models for both the glass formation and the universal anomalous properties of glasses are described and analyzed. The origin and main features of soft atomic-motion modes and their excitations, as well as their role in the anomalous properties, are considered in detail. It is shown particularly that the soft-mode model gives rise to a consistent description of the anomalous properties. Additional manifestations of the soft modes in glassy phenomena are described. Other models of the anomalous glassy properties can be considered as limit cases of the soft-mode model for either very low or moderately low temperatures/frequencies.
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http://www.worldscientific.com/worldscibooks/10.1142/8496#t=toc
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