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Phase change materials
by
Raoux, Simone
, Ielmini, Daniele
, Wuttig, Matthias
, Karpov, Ilya
in
Amorphous
/ applications
/ Applied and Technical Physics
/ Characterization and Evaluation of Materials
/ Chemical bonds
/ Crystals
/ devices
/ Energy Materials
/ Hybridization
/ Materials Engineering
/ Materials Science
/ Memory
/ Nanotechnology
/ Phase change materials
/ Resistive switching phenomena in thin films: Materials
/ Resistive switching phenomena in thin films: Materials, devices, and applications
/ Spectrum analysis
/ Success
2012
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Phase change materials
by
Raoux, Simone
, Ielmini, Daniele
, Wuttig, Matthias
, Karpov, Ilya
in
Amorphous
/ applications
/ Applied and Technical Physics
/ Characterization and Evaluation of Materials
/ Chemical bonds
/ Crystals
/ devices
/ Energy Materials
/ Hybridization
/ Materials Engineering
/ Materials Science
/ Memory
/ Nanotechnology
/ Phase change materials
/ Resistive switching phenomena in thin films: Materials
/ Resistive switching phenomena in thin films: Materials, devices, and applications
/ Spectrum analysis
/ Success
2012
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Do you wish to request the book?
Phase change materials
by
Raoux, Simone
, Ielmini, Daniele
, Wuttig, Matthias
, Karpov, Ilya
in
Amorphous
/ applications
/ Applied and Technical Physics
/ Characterization and Evaluation of Materials
/ Chemical bonds
/ Crystals
/ devices
/ Energy Materials
/ Hybridization
/ Materials Engineering
/ Materials Science
/ Memory
/ Nanotechnology
/ Phase change materials
/ Resistive switching phenomena in thin films: Materials
/ Resistive switching phenomena in thin films: Materials, devices, and applications
/ Spectrum analysis
/ Success
2012
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Journal Article
Phase change materials
2012
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Overview
Phase change materials can be switched rapidly and repeatedly between amorphous and crystalline phases, which differ distinctly in their optical and electrical properties. This combination of properties is utilized to store information in rewritable optical storage media and in emerging phase change memory technology. This article describes the physical properties of phase change materials such as Ge2Sb2Te5 and relates these properties to specific structural and bonding characteristics. Electrical conduction and switching, which are relevant for phase change memory operation, are explained from a physical perspective. Phase change memory device integration and technology development are discussed, including aspects of access device selection and integration.
Publisher
Cambridge University Press,Springer International Publishing,Springer Nature B.V
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