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Lithium Niobate [electronic resource] : Defects, Photorefraction and Ferroelectric Switching / by Tatyana Volk, Manfred Wȵhlecke.

Por: Colaborador(es): Tipo de material: TextoTextoSeries Springer Series in Materials Science ; 115 | Springer Series in Materials Science ; 115Editor: Berlin, Heidelberg : Springer Berlin Heidelberg, 2009Descripción: online resourceTipo de contenido:
  • text
Tipo de medio:
  • computer
Tipo de soporte:
  • online resource
ISBN:
  • 9783540707660
Trabajos contenidos:
  • SpringerLink (Online service)
Tema(s): Formatos físicos adicionales: Sin títuloClasificación CDD:
  • 620.11295 23
  • 620.11297 23
Clasificación LoC:
  • TA1750-1750.22
Recursos en línea:
Contenidos:
Springer eBooksResumen: The book presents the current state of studies of point defects, both intrinsic and extrinsic (impurities, radiation centers, etc.), in LiNbO3. The contribution of intrinsic defects to photoinduced charge transport, i.e. to the photorefraction, is explained. The photorefractive and optical properties of LiNbO3 crystals with different stoichiometry and of those doped with so-called "optical-damage resistant" impurities controlling the intrinsic defect structure are described in detail. Applications included are to the problem of non-erasable recording of photorefractive holograms in LiNbO3 and the current situation of studies in the ferroelectric switching and domain structure of LiNbO3, as well as the creation of periodically-poled structures for the optical frequency conversion.
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Point Defects in LiNbO3 -- General Introduction to Photorefraction in LiNbO3 -- Photorefraction in LiNbO3 Crystals with Different Stoichiometry and/or Doped with Optical-Damage-Resistant Impurities -- Problem of a Non-Erasable Photorefractive Hologram -- Properties to Characterize Undoped and Optical-Damage-Resistant LiNbO3 Crystals -- Polarization Reversal and Ferroelectric Domains in LiNbO3 Crystals.

The book presents the current state of studies of point defects, both intrinsic and extrinsic (impurities, radiation centers, etc.), in LiNbO3. The contribution of intrinsic defects to photoinduced charge transport, i.e. to the photorefraction, is explained. The photorefractive and optical properties of LiNbO3 crystals with different stoichiometry and of those doped with so-called "optical-damage resistant" impurities controlling the intrinsic defect structure are described in detail. Applications included are to the problem of non-erasable recording of photorefractive holograms in LiNbO3 and the current situation of studies in the ferroelectric switching and domain structure of LiNbO3, as well as the creation of periodically-poled structures for the optical frequency conversion.

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