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Bücher von Tetsuzo (Tokyo University of Technology Yoshimura

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  • - Self-Aligned Coupling Optical Waveguides
    von Tetsuzo (Tokyo University of Technology Yoshimura
    141,00 €

    The SOLNET (self-organized lightwave network) enables self-aligned optical coupling between misaligned optical devices with different core sizes, optical wiring in 3-D free spaces, and targeting lightwaves onto specific objects. These features make fabrication processes of optical networks within systems simpler to reduce the system cost. By reading this book, the readers can learn SOLNETs, their applications, and future challenges systematically. The readers can get hints to reduce the system cost by implementing optical solder and 3-D optical wiring of SOLNET into the systems.

  • - Molecular Layer Deposition and Applications
    von Tetsuzo (Tokyo University of Technology Yoshimura
    130,00 €

    This book is an invaluable resource for material scientists working to develop artificial materials that can be structurally tailored at the atomic/molecular-level. This capability will enable electron-wave function control, which would improve material performance and generate new photonic/electronic phenomena. Exploring the prospect of structural modification in artificial materials, field pioneer Yoshimura describes how we can enhance the photonic/electronic properties of thin films using such precise manipulation of atomic and molecular arrangement. He also addresses related topics and concepts, such as a self-organized lightwave networks and heterogeneous integration processes. In addition, this important resource assesses applications in computers, optical switching systems, solar energy conversion systems, and bio/medical-photonics.

  • - Molecular Layer Deposition and Applications
    von Tetsuzo (Tokyo University of Technology Yoshimura
    313,00 €

    This book is an invaluable resource for material scientists working to develop artificial materials that can be structurally tailored at the atomic/molecular-level. This capability will enable electron-wave function control, which would improve material performance and generate new photonic/electronic phenomena. Exploring the prospect of structural modification in artificial materials, field pioneer Yoshimura describes how we can enhance the photonic/electronic properties of thin films using such precise manipulation of atomic and molecular arrangement. He also addresses related topics and concepts, such as a self-organized lightwave networks and heterogeneous integration processes. In addition, this important resource assesses applications in computers, optical switching systems, solar energy conversion systems, and bio/medical-photonics.

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