Optically Induced Nanostructures : Biomedical and Technical Applications

Nanostructuring of materials is a task at the heart of many modern disciplines in mechanical engineering, as well as optics, electronics, and the life sciences. This book includes an introduction to the relevant nonlinear optical processes associated with very short laser pulses for the generation o...

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Detalles Bibliográficos
Autores principales: Karsten König, Andreas Ostendorf
Formato: Libro
Publicado: De Gruyter 2015
Materias:
Acceso en línea:Ver este registro en EBSCOhost
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          Karsten König
          Andreas Ostendorf
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        Medical instruments and apparatus
        Nanotechnology
        Technology
        Microelectronics
        Nonlinear optics
        Biomedical engineering
        Nanostructured materials--Optical properties
        Femtosecond lasers
        Manufactures
        Physical sciences
        Lasers
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          SCIENCE / Microscopes & Microscopy
          SCIENCE / Nanoscience
          SCIENCE / Physics / General
          SCIENCE / Physics / Condensed Matter
          TECHNOLOGY & ENGINEERING / Electronics / General
          TECHNOLOGY & ENGINEERING / Engineering (General)
          TECHNOLOGY & ENGINEERING / Nanotechnology & MEMS
          TECHNOLOGY & ENGINEERING / Technical & Manufacturing Industries & Trades
          Medical instruments and apparatus
          Nanotechnology
          Technology
          Microelectronics
          Nonlinear optics
          Biomedical engineering
          Nanostructured materials--Optical properties
          Femtosecond lasers
          Manufactures
          Physical sciences
          Lasers
      ab: Nanostructuring of materials is a task at the heart of many modern disciplines in mechanical engineering, as well as optics, electronics, and the life sciences. This book includes an introduction to the relevant nonlinear optical processes associated with very short laser pulses for the generation of structures far below the classical optical diffraction limit of about 200 nanometers as well as coverage of state-of-the-art technical and biomedical applications. These applications include silicon and glass wafer processing, production of nanowires, laser transfection and cell reprogramming, optical cleaning, surface treatments of implants, nanowires, 3D nanoprinting, STED lithography, friction modification, and integrated optics. The book highlights also the use of modern femtosecond laser microscopes and nanoscopes as novel nanoprocessing tools.
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