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Sumets M. Lithium Niobate-Based Heterostructures...2ed 2024

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Sumets M. Lithium Niobate-Based Heterostructures...2ed 2024

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Category: Other
Total size: 17.06 MB
Added: 6 months ago (2025-04-20 13:57:01)

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Info Hash: 5ED31DAE70551635FD20B6700D3A56D0B947B258
Last updated: 8 hours ago (2025-11-04 09:05:40)

Description:

Textbook in PDF format This book explores the fundamental principles of fabricating LiNbOā‚ƒ-based heterostructures, examining their properties and the electron phenomena that underpin their effective use in various devices. The monograph presents a wealth of original experimental results, drawn from fifteen years of extensive research on Lithium Niobate thin films, their core properties, and applications. It serves as a valuable resource for readers across various fields of Materials Science, offering both foundational knowledge and practical insights. The first edition has garnered highly positive feedback from leading experts worldwide. Key features: Presents a comprehensive comparative analysis of existing fabrication techniques for LiNbOā‚ƒ films. Investigates in detail the structure, composition, and morphology of thin LiNbOā‚ƒ films as influenced by various deposition regimes. Thoroughly describes the structural evolution of amorphous LiNbOā‚ƒ films during the crystallization process. Provides an in-depth study and classification of electron phenomena in LiNbOā‚ƒ-based heterostructures. Proposes optimal fabrication parameters for LiNbOā‚ƒ-based heterostructures, ensuring their successful application. Describes oxide charge localization and evolution in LiNbOā‚ƒ-based heterostructures for the first time. Includes additional material on Multifunctional Si–LiNbOā‚ƒ heterostructures for non-volatile memory units. Lithium niobate thin films: potential applications, synthesis methods, structure, and properties Synthesis, structure, and surface morphology of LiNbO3 films Electron phenomena in LiNbO3-based heterostructures Effect of sputtering conditions and post-growth treatment on electron phenomena in Si–LiNbO3 heterostructures Oxide charge: localization, evolution, and related phenomena at heterojunctions Multifunctional Si–LiNbO3 heterostructures for nonvolatile memory units