Progress in nano-electro-optics IV: characterization of nano-optical materials and optical near-field interactions
(eBook)

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Published:
Berlin : Springer, [2005].
Format:
eBook
ISBN:
9783540273080, 3540273085, 3540232362, 9783540232360, 1280337621, 9781280337628
Content Description:
1 online resource (xiv, 206 pages) : illustrations.
Status:
Available Online
Description

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APA Citation (style guide)

Ohtsu, M. (2005). Progress in nano-electro-optics IV: characterization of nano-optical materials and optical near-field interactions. Berlin, Springer.

Chicago / Turabian - Author Date Citation (style guide)

Ohtsu, Motoichi. 2005. Progress in Nano-electro-optics IV: Characterization of Nano-optical Materials and Optical Near-field Interactions. Berlin, Springer.

Chicago / Turabian - Humanities Citation (style guide)

Ohtsu, Motoichi, Progress in Nano-electro-optics IV: Characterization of Nano-optical Materials and Optical Near-field Interactions. Berlin, Springer, 2005.

MLA Citation (style guide)

Ohtsu, Motoichi. Progress in Nano-electro-optics IV: Characterization of Nano-optical Materials and Optical Near-field Interactions. Berlin, Springer, 2005.

Note! Citation formats are based on standards as of July 2022. Citations contain only title, author, edition, publisher, and year published. Citations should be used as a guideline and should be double checked for accuracy.
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Language:
English

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Bibliography
Includes bibliographical references and index.
Description
Annotation,This volume focuses on the characterization of nano-optical materials and optical near-field interactions. It begins with the techniques for characterizing the magneto-optical Kerr effect and continues with methods to determine structural and optical properties in high-quality quantum wires with high spatial uniformity. Further topics include: near-field luminescence mapping in InGaN/GaN single quantum well structures in order to interpret the recombination mechanism in InGaN-based nano-structures; and theoretical treatment of the optical near field and optical near-field interactions, providing the basis for investigating the signal transport and associated dissipation in nano-optical devices. Taken as a whole, this overview will be a valuable resource for engineers and scientists working in the field of nano-electro-optics.
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