Edited by two recognised experts, this book provides a comprehensive overview of integrated optics, from modelling to fabrication, materials to integration platforms, and characterization techniques to applications. Chapters provide a broad context that addresses a range of current and potential future research and development trends.
Edited by two recognised experts, this book provides a comprehensive overview of integrated optics, from modelling to fabrication, materials to integration platforms, and characterization techniques to applications. Chapters provide a broad context that addresses a range of current and potential future research and development trends.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
1. Part I: Characterization techniques * Chapter 1: Optical characterization techniques * Chapter 2: Structural and surface-characterization techniques * Chapter 3: Integrated spectroscopy using THz time-domain spectroscopy and low-frequency Raman scattering 2. Part II: Integrated optical waveguides, devices, and applications * Chapter 4: Plasmonic nanostructures and waveguides * Chapter 5: Crystalline thin films for integrated laser applications * Chapter 6: Integration of optical microcavities * Chapter 7: Electric and magnetic sensors based on whispering gallery mode spherical resonators * Chapter 8: Nonlinear integrated optics in proton-exchanged lithium niobate waveguides and applications to classical and quantum optics * Chapter 9: Next-generation long-wavelength infrared detector arrays: competing technologies and modeling challenges * Chapter 10: Arrayed waveguide gratings for telecom and spectroscopic applications * Chapter 11: Integrated quantum photonics * Chapter 12: The optical reservoir computer: a new approach to a programmable integrated optics system based on an artificial neural network
1. Part I: Characterization techniques * Chapter 1: Optical characterization techniques * Chapter 2: Structural and surface-characterization techniques * Chapter 3: Integrated spectroscopy using THz time-domain spectroscopy and low-frequency Raman scattering 2. Part II: Integrated optical waveguides, devices, and applications * Chapter 4: Plasmonic nanostructures and waveguides * Chapter 5: Crystalline thin films for integrated laser applications * Chapter 6: Integration of optical microcavities * Chapter 7: Electric and magnetic sensors based on whispering gallery mode spherical resonators * Chapter 8: Nonlinear integrated optics in proton-exchanged lithium niobate waveguides and applications to classical and quantum optics * Chapter 9: Next-generation long-wavelength infrared detector arrays: competing technologies and modeling challenges * Chapter 10: Arrayed waveguide gratings for telecom and spectroscopic applications * Chapter 11: Integrated quantum photonics * Chapter 12: The optical reservoir computer: a new approach to a programmable integrated optics system based on an artificial neural network
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