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The electron glass / M. Pollak, Department of Physics, University of California, Riverside, Miguel Ortuño, Departamento de F'isica, Universidad de Murcia, Aviad Frydman, Department of Physics, Bar Ilan University.

By: Pollak, Michael [author.].
Contributor(s): Ortuño, Miguel [author.] | Frydman, Aviad [author.].
Material type: materialTypeLabelBookPublisher: Cambridge : Cambridge University Press, 2013Description: 1 online resource (xiii, 291 pages) : digital, PDF file(s).Content type: text Media type: computer Carrier type: online resourceISBN: 9780511978999 (ebook).Subject(s): Glass -- Electric properties | Electric conductivity | Hopping conduction | ElectronsAdditional physical formats: Print version: : No titleDDC classification: 530.4/12 Online resources: Click here to access online
Contents:
Introduction -- Disordered electronic systems -- Basics of glasses -- Equilibrium properties of the electron glass -- dc Conductivity -- Other transport properties of electron glasses -- Glassy properties -- Relation to other glasses -- Open issues.
Summary: Presenting an up-to-date report on electronic glasses, this book examines experiments and theories for a variety of disordered materials where electrons exhibit glassy properties. Some interesting mathematical models of idealized systems are also discussed. The authors examine problems in this field, highlighting which issues are currently understood and which require further research. Where appropriate, the authors focus on physical arguments over elaborate derivations. The book provides introductory background material on glassy systems, properties of disordered systems and transport properties so it can be understood by researchers in condensed matter physics who are new to this field.
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Title from publisher's bibliographic system (viewed on 05 Oct 2015).

Introduction -- Disordered electronic systems -- Basics of glasses -- Equilibrium properties of the electron glass -- dc Conductivity -- Other transport properties of electron glasses -- Glassy properties -- Relation to other glasses -- Open issues.

Presenting an up-to-date report on electronic glasses, this book examines experiments and theories for a variety of disordered materials where electrons exhibit glassy properties. Some interesting mathematical models of idealized systems are also discussed. The authors examine problems in this field, highlighting which issues are currently understood and which require further research. Where appropriate, the authors focus on physical arguments over elaborate derivations. The book provides introductory background material on glassy systems, properties of disordered systems and transport properties so it can be understood by researchers in condensed matter physics who are new to this field.

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