Frustrated Materials and Ferroic Glasses

Brings together experts in glasses, geometrical frustration, and functional materials Covers theory, experiment, and simulations of ferroics Features an easy-to-read introduction in each chapter to make specialized topics accessible to a broad readership in condensed matter physics and materials sci...

Full description

Bibliographic Details
Other Authors: Lookman, Turab (Editor), Ren, Xiaobing (Editor)
Format: eBook
Language:English
Published: Cham Springer International Publishing 2018, 2018
Edition:1st ed. 2018
Series:Springer Series in Materials Science
Subjects:
Online Access:
Collection: Springer eBooks 2005- - Collection details see MPG.ReNa
LEADER 03989nmm a2200421 u 4500
001 EB001854357
003 EBX01000000000000001018659
005 00000000000000.0
007 cr|||||||||||||||||||||
008 181201 ||| eng
020 |a 9783319969145 
100 1 |a Lookman, Turab  |e [editor] 
245 0 0 |a Frustrated Materials and Ferroic Glasses  |h Elektronische Ressource  |c edited by Turab Lookman, Xiaobing Ren 
250 |a 1st ed. 2018 
260 |a Cham  |b Springer International Publishing  |c 2018, 2018 
300 |a XIII, 276 p. 153 illus., 133 illus. in color  |b online resource 
505 0 |a List of Contributors -- Preface -- 1 What can spin glass theory and analogies tell us about ferroic glasses? -- 2 Spin glasses: Experimental signatures and salient outcomes -- 3 Frustration(s) and the Ice Rule: From Natural Materials to the Deliberate Design of Exotic Behaviors -- 4 Glassy phenomena and precursors in the lattice dynamics -- 5 Relaxor Ferroelectrics -- 6 Probing glassiness in Heuslers via density functional theory calculations -- 7 Strain glasses -- 8 Discrete pseudo spin and continuum models for strain glass -- 9 Mesoscopic modelling of strain glass -- 10 Phase field simulations of ferroic glasses 
653 |a Nanochemistry 
653 |a Ceramic materials 
653 |a Condensed Matter Physics 
653 |a Optical Materials 
653 |a Ceramics 
653 |a Microtechnology 
653 |a Optical materials 
653 |a Microsystems and MEMS. 
653 |a Magnetism 
653 |a Condensed matter 
653 |a Microelectromechanical systems 
700 1 |a Ren, Xiaobing  |e [editor] 
041 0 7 |a eng  |2 ISO 639-2 
989 |b Springer  |a Springer eBooks 2005- 
490 0 |a Springer Series in Materials Science 
028 5 0 |a 10.1007/978-3-319-96914-5 
856 4 0 |u https://doi.org/10.1007/978-3-319-96914-5?nosfx=y  |x Verlag  |3 Volltext 
082 0 |a 538 
520 |a Brings together experts in glasses, geometrical frustration, and functional materials Covers theory, experiment, and simulations of ferroics Features an easy-to-read introduction in each chapter to make specialized topics accessible to a broad readership in condensed matter physics and materials science 
520 |a This book provides a comprehensive introduction to ferroics and frustrated materials. Ferroics comprise a range of materials classes with functionalities such as magnetism, polarization, and orbital degrees of freedom and strain. Frustration, due to geometrical constraints, and disorder, due to chemical and/or structural inhomogeneities, can lead to glassy behavior, which has either been directly observed or inferred in a range of materials classes from model systems such as artificial spin ice, shape memory alloys, and ferroelectrics to electronically functional materials such as manganites. Interesting and unusual properties are found to be associated with these glasses and have potential for novel applications. Just as in prototypical spin glass and structural glasses, the elements of frustration and disorder lead to non-ergodocity, history dependence, frequency dependent relaxation behavior, and the presence of inhomogeneous nano clusters or domains.  
520 |a In addition, there are newstates of matter, such as spin ice; however, it is still an open question as to whether these systems belong to the same family or universality class. The purpose of this work is to collect in a single volume the range of materials systems with differing functionalities that show many of the common characteristics of geometrical frustration, where interacting degrees of freedom do not fit in a lattice or medium, and glassy behavior is accompanied by additional presence of disorder. The chapters are written by experts in their fields and span experiment and theory, as well as simulations. Frustrated Materials and Ferroic Glasses will be of interest to a wide range of readers in condensed matter physics and materials science.