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【中商原版】Nanostructured And Subwavelength Waveguides 英文原版 Maksim Skorobogatiy

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【中商原版】Nanostructured And Subwavelength Waveguides 英文原版 Maksim Skorobogatiy 商品图0
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纳米结构与亚波长波导:基础与应用 Nanostructured And Subwavelength Waveguides - Fundamentals And Applications


基本信息

Series:Wiley Series in Materials for Electronic & Optoelectronic Applications

Format:Hardback 334 pages

Publisher:John Wiley & Sons Inc

Imprint:John Wiley & Sons Inc

ISBN:9781119974512

Published:6 Jul 2012

Weight:658g

Dimensions:252 x 174 (mm)

页面参数仅供参考,具体以实物为准


内容简介

光波导在光子学中发挥着重要作用,因为它们能够捕获光并在激发点和检测点之间有效地传输光。此外,波导可以管理光的许多基本特性,并允许与其他光学系统进行高度受控的交互。因此,波导在电信、传感、光谱学、光源和高功率光传输中无处不在。纳米结构和亚波长波导具有额外的优势;它们能够将光限制在衍射极限以下的长度尺度上,增强或抑制光与物质的相互作用,以及管理光的基本特性,如能量的速度和方向以及相位传播。


本书介绍了大量亚波长和纳米结构光波导和光纤的半解析理论和实际应用,这些光波导和光纤在电磁波谱的各个区域运行,包括可见光、近红外和中红外以及太赫兹。推导出大量近似但高度准确的解析表达式,这些表达式描述了平面和圆形各向同性、各向异性和超材料波导和光纤的各种模态特性,以及在平面和圆形界面上传播的表面波。还考虑了各种天然和人造材料,例如电介质、金属、极性材料、各向异性全电介质和金属电介质超材料。


内容围绕四个主要主题:


由均匀、一般各向异性的材料制成的亚波长波导和光纤的引导特性

使用几何建模和有效介质近似的纳米结构波导和光纤的引导特性

开发各种 1D 和 2D 纳米结构材料的有效介质近似,并将这些近似扩展到更短的波长

亚波长和纳米结构波导和光纤的实际应用


纳米结构亚波长和波导的独特之处在于,它在一个地方收集了广泛的分析解决方案,这些解决方案是在各种极限下为许多实际重要且流行的波导和光纤几何形状和材料得出的。

Optical waveguides take a prominent role in photonics because they are able to trap and to transport light efficiently between a point of excitation and a point of detection. Moreover, waveguides allow the management of many of the fundamental properties of light and allow highly controlled interaction with other optical systems. For this reason waveguides are ubiquitous in telecommunications, sensing, spectroscopy, light sources, and high power light delivery. Nanostructured and subwavelength waveguides have additional advantages; they are able to confine light at a length scale below the diffraction limit and enhance or suppress light-matter interaction, as well as manage fundamental properties of light such as speed and direction of energy and phase propagation.


This book presents semi-analytical theory and practical applications of a large number of subwavelength and nanostructured optical waveguides and fibers operating in various regions of the electromagnetic spectrum including visible, near and mid-IR and THz. A large number of approximate, while highly precise analytical expressions are derived that describe various modal properties of the planar and circular isotropic, anisotropic, and metamaterial waveguides and fibers, as well as surface waves propagating on planar, and circular interfaces. A variety of naturally occurring and artificial materials are also considered such as dielectrics, metals, polar materials, anisotropic all-dielectric and metal-dielectric metamaterials.

Contents are organized around four major themes:



  • Guidance properties of subwavelength waveguides and fibers made of homogeneous, generally anisotropic materials
  • Guidance properties of nanostructured waveguides and fibers using both exact geometry modelling and effective medium approximation
  • Development of the effective medium approximations for various 1D and 2D nanostructured materials and extension of these approximations to shorter wavelengths
  • Practical applications of subwavelength and nanostructured waveguides and fibers


Nanostructured Subwavelengths and Waveguides is unique in that it collects in a single place an extensive range of analytical solutions which are derived in various limits for many practically important and popular waveguide and fiber geometries and materials.


内容推荐

“本书内容覆盖范围严谨且透明,因此很可能会被这些快速发展学科领域的研究人员广泛使用。”(《光学与光子学新闻》,2012 年 11 月 9 日)

“Coverage of material is both rigorous and transparent and thus this volume is likely to be used extensively by researchers in these rapidly developing subject areas.” (Optics & Photonics News, 9 November 2012)


作者简介

Maksim Skorobogatiy 是加拿大蒙特利尔理工学院工程物理系的教授。他在麻省理工学院获得博士学位后于 2003 年来到蒙特利尔理工学院。

他在光波导领域工作了 12 年多,发表了 70 多篇论文。Maksim 是光子晶体波导方面的专家,最近为 CUP (2009) 撰写了一本关于该主题的书。


他的研究小组积极在公共媒体上传播他们的研究成果。最近,他们关于光子纺织品的研究在家电视TéleQuébec 上播出,探索频道关于电子纺织品的纪录片即将播出。

Maksim Skorobogatiy is Professor in the Department of Engineering Physics at the Ecole Polytechnique de Montréal, Canada. He arrived at Polytechnique in 2003 after completing his PhD at MIT.

He has worked in the area of optical waveguides for over 12 years, and has published over 70 papers. Maksim is an expert on photonic crystal waveguides, and has recently authored a book on this topic for CUP (2009).


His research group is active in disseminating their results in the public media. Most recently their research on photonic textiles was featured on a national TV station TéleQuébec, and a Discovery channel documentary about electronic textiles will be broadcast soon.

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【中商原版】Nanostructured And Subwavelength Waveguides 英文原版 Maksim Skorobogatiy

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