Nanophotonic Fabrication: Self-Assembly and Deposition Techniques 2012th Edition

Nanophotonic Fabrication: Self-Assembly and Deposition Techniques 2012th Edition book cover

Nanophotonic Fabrication: Self-Assembly and Deposition Techniques 2012th Edition

Author(s): Takashi Yatsui (Author)

  • Publisher: Springer
  • Publication Date: 13 April 2012
  • Edition: 2012th
  • Language: English
  • Print length: 132 pages
  • ISBN-10: 3642241719
  • ISBN-13: 9783642241710

Book Description

Nanophotonics, a novel optical technology, utilizes the local interaction between nanometric particles via optical near fields. The optical near fields are the elementary surface excitations on nanometric particles, i.e. dressed photons that carry material energy. Of the variety of qualitative innovations in optical technology realized by nanophotonics, this books focuses on fabrication. To fabricate nano-scale photonic devices with nanometer-scale controllability in size and position, we developed a self-assembly method for size- and position-controlled ultra-long nanodot chains using a novel effect of near-field optical desorption. A novel deposition and etching scheme under nonresonant conditions is also demonstrated and its origin is reviewed.

Editorial Reviews

Review

From the reviews:

“This book focuses on nanophotonic fabrication. … The book is an introduction for readers, who will be interested in various functions that differ depending on the device.” (Lisa Tongning Li, Optics & Photonics News, November, 2012)

From the Back Cover

Nanophotonics, a novel optical technology, utilizes the local interaction between nanometric particles via optical near fields. The optical near fields are the elementary surface excitations on nanometric particles, i.e. dressed photons that carry material energy. Of the variety of qualitative innovations in optical technology realized by nanophotonics, this books focuses on fabrication. To fabricate nano-scale photonic devices with nanometer-scale controllability in size and position, we developed a self-assembly method for size- and position-controlled ultra-long nanodot chains using a novel effect of near-field optical desorption. A novel deposition and etching scheme under nonresonant conditions is also demonstrated and its origin is reviewed.

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