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

Book Cover
Published:
Berlin : Springer, [2005].
Format:
eBook
ISBN:
9783540273080, 3540273085, 3540232362, 9783540232360, 1280337621, 9781280337628
Status:
Available Online
Description

Annotation

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Citations
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. Web.

Note! Citation formats are based on standards as of July 2010. 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

Notes

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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