Optical Near Fields

Optical Near Fields
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光学近场

DOI:
10.1007/978-3-662-09104-3
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发表时间:
2004
期刊:
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影响因子:
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通讯作者:
Kiyoshi Kobayashi
Kiyoshi Kobayashi
中科院分区:
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文献类型:
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作者:
M. Ohtsu;Kiyoshi Kobayashi

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本书为从事纳米光子学和原子光子学研究的学生、工程师和科学家概述了物理上直观的概念和理论。主要的话题是光学近吗?埃尔德,也就是瘦子?位于纳米材料表面的光的长度长度。20世纪80年代初,其中一位作者(M.Ohtsu)开始了他对光学NEAR?的开创性研究。因为他判断需要纳米尺寸的光来改变光学科学和技术的范式。这?以前没有这样的研究,与光学科学和技术的趋势不相容。然而,他受到鼓舞的是,其他国家的科学家在20世纪80年代中期也开始了类似的研究。20世纪90年代,光学技术发展非常迅速,光子调色剂工业也得到了发展,但进一步的进步成为一种趋势。邪教因光的基本极限而被称为迪?动作限制。然而,科学家和工程师们越来越多地意识到,使用光学NEAR?可以克服这一限制。菲尔兹。因为要理解光学近距离的本质,就需要对光学概念进行彻底的范式转变。关于这一主题的教科书的需求增加了。本书旨在满足这一需求。
This book outlines physically intuitive concepts and theories for students, engineers, and scientists who will be engaged in research in nanophotonics and atom photonics. The main topic is the optical near? eld, ie, the thin? lm of light that is localized on the surface of a nanometric material. In the early 1980s, one of the authors (M. Ohtsu) started his pioneering research on optical near? elds because he judged that nanometer-sized light would be required to shift the paradigm of optical science and technology. This? eld of research did not exist previously, and was not compatible with trends in opticalscienceandtechnology. However, hewasencouragedbytheknowledge that scientists in other countries started similar research in the mid 1980s. In the 1990s, optical technology progressed very rapidly and the p-tonics industry developed, but further progress became di? cult due to the fundamental limit of light known as the di? raction limit. However, there was a growing awareness among scientists and engineers that this limit can be overcome using optical near? elds. Since a drastic paradigm shift in the c-cepts of optics is required to understand the intrinsic nature of optical near? elds, the demand for a textbook on this subject has increased. The present book aims to meet this demand.