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tückmantel philippe - scanning probe studies of structural and functional properties of ferroelectric domains and domain walls

Scanning Probe Studies of Structural and Functional Properties of Ferroelectric Domains and Domain Walls




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Dettagli

Genere:Libro
Lingua: Inglese
Editore:

Springer

Pubblicazione: 04/2021
Edizione: 1st ed. 2021





Trama

This thesis explores the fascinating properties of domain walls in ferroelectric materials. Domain walls can be used as model systems to study fundamental aspects of interface physics, such as crackling noise, with implications extending to a broad variety of systems, from material fracture and earthquakes to solar flares and collective decision making. Ferroelectric domain walls also show functional properties absent from the domains themselves, such as enhanced conduction leading to the tantalizing possibility of reconfigurable nanoelectronic circuitry where domain walls are active components. This work discusses the crackling physics of domain walls in thin films of Pb(Zr0.2Ti0.8)O3, as well as links between the local conductivity of domain walls and nanoscale geometrical distortions due to defects, and discusses unusual polarization textures with rotational components at crossings of ferroelastic twin domains. The results presented in this thesis have important implications for the experimental study of crackling systems.





Sommario

Introduction and Motivation.- Ferroelectricity.- Crackling Noise and Avalanches.- Experimental Methods.- Crackling at the Nanoscale.




Autore

Philippe Tückmantel obtained his Master in Physics in 2015 from the University of Geneva before continuing his graduate studies there. During his PhD, he worked mostly on nanoscale properties of domain walls in ferroelectric thin films using scanning probe microscopy techniques.










Altre Informazioni

ISBN:

9783030723880

Condizione: Nuovo
Collana: Springer Theses
Dimensioni: 235 x 155 mm Ø 454 gr
Formato: Copertina rigida
Illustration Notes:XVI, 117 p. 96 illus., 90 illus. in color.
Pagine Arabe: 117
Pagine Romane: xvi


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