搜索附件  
头雁微网 附件中心 技术应用 情报信息 Electromagnetic Metamaterials: Physics and Engineering Explorations: Electromagnetic Metamaterials Physics and Engineering Explorations.part2.rar
板块导航
附件中心&附件聚合2.0
For Discuz! X3.5 © hgcad.com

Electromagnetic Metamaterials: Physics and Engineering Explorations: Electromagnetic Metamaterials Physics and Engineering Explorations.part2.rar

 

Electromagnetic Metamaterials: Physics and Engineering Explorations:
[size=120%]Electromagnetic Metamaterials: Physics and Engineering Explorations
By Nader Engheta, Richard W Ziolkowski


    Publisher: Wiley-IEEE Press Number Of Pages: 414 Publication Date: 2006-07-11 ISBN-10 / ASIN: 0471761028 ISBN-13 / EAN: 9780471761020
  • Binding: Hardcover


Book Description:
Leading experts explore the exotic properties and exciting applications of electromagnetic metamaterials
Metamaterials: Physics and Engineering Explorations gives readers a clearly written, richly illustrated introduction to the most recent research developments in the area of electromagnetic metamaterials. It explores the fundamental physics, the designs, and the engineering aspects, and points to a myriad of exciting potential applications. The editors, acknowledged leaders in the field of metamaterials, have invited a group of leading researchers to present both their own findings and the full array of state-of-the-art applications for antennas, waveguides, devices, and components.
Following a brief overview of the history of artificial materials, the publication divides its coverage into two major classes of metamaterials. The first half of the publication examines effective media with single (SNG) and double negative (DNG) properties; the second half examines electromagnetic band gap (EBG) structures. The book further divides each of these classes into their three-dimensional (3D volumetric) and two-dimensional (2D planar or surface) realizations. Examples of each type of metamaterial are presented, and their known and anticipated properties are reviewed.
Collectively, Metamaterials: Physics and Engineering Explorations presents a review of recent research advances associated with a highly diverse set of electromagnetic metamaterials. Its multifaceted approach offers readers a combination of theoretical, numerical, and experimental perspectives for a better understanding of their behaviors and their potentialapplications in components, devices, and systems. Extensive reference lists provide opportunities to explore individual topics and classes of metamaterials in greater depth.
With full-color illustrations throughout to clarify concepts and help visualize actual results, this book provides a dynamic, user-friendly resource for students, engineers, physicists, and other researchers in the areas of electromagnetic materials, microwaves, millimeter waves, and optics. It equips newcomers with a basic understanding of metamaterials and their potential applications. Advanced researchers will benefit from thought-provoking perspectives that will deepen their knowledge and lead them to new areas of investigation.



Summary: Electromagnetic Metamaterials: Physics and Engineering Explorations
Rating: 3
In essence, this book is a survey of the new field of metamaterials showing results and different material configurations. The book has a wealth of photos and figures. The theory is presented at a basic level. Equations presented relate to the physics of operation. Simulation data is generated with advanced tools which the reader must develop or purchase. Measurements require very specialized and expensive equipment. More in depth theory and applications can be obtained from a large number of referenced papers. The reader must be skilled in the art of metamaterials in order to understand these papers.
天寒咳嗽very牧场!!!!
CONTENTS
Preface xv
Contributors xix
PART I
DOUBLE-NEGATIVE (DNG) METAMATERIALS 1
SECTION I
THREE-DIMENSIONAL VOLUMETRIC DNG METAMATERIALS 3
CHAPTER 1 INTRODUCTION, HISTORY, AND SELECTED TOPICS IN
FUNDAMENTAL THEORIES OF METAMATERIALS 5
Richard W. Ziolkowski and Nader Engheta
1.1 Introduction 5
1.2 Wave Parameters in DNG Media 9
1.3 FDTD Simulations of DNG Media 10
1.4 Causality in DNG Media 11
1.5 Scattering from a DNG Slab 13
1.6 Backward Waves 16
1.7 Negative Refraction 17
1.8 Phase Compensation with a DNG Medium 19
1.9 Dispersion Compensation in a Transmission Line Using a DNG Medium 21
1.10 Subwavelength Focusing with a DNG Medium 23
1.11 Metamaterials with a Zero Index of Refraction 32
1.12 Summary 37
References 37
CHAPTER 2 FUNDAMENTALS OF WAVEGUIDE AND ANTENNA APPLICATIONS
INVOLVING DNG AND SNG METAMATERIALS 43
Nader Engheta, Andrea Al` u, Richard W. Ziolkowski, and
Aycan Erentok
2.1 Introduction 43
2.2 Subwavelength Cavities and Waveguides 44
2.3 Subwavelength Cylindrical and Spherical Core–Shell Systems 54
2.4 ENG–MNG and DPS–DNG Matched Metamaterial Pairs for Resonant
Enhancements of Source-Generated Fields 60
2.5 Efficient, Electrically Small Dipole Antennas: DNG Nested Shells 62
vii
viii CONTENTS
2.6 Efficient, Electrically Small Dipole Antennas: ENG Nested Shells—Analysis 70
2.7 Efficient, Electrically Small Dipole Antennas: HFSS Simulations of Dipole–ENG
Shell Systems 73
2.8 Metamaterial Realization of an Artificial Magnetic Conductor for Antenna
Applications 76
2.9 Zero-Index Metamaterials for Antenna Applications 80
2.10 Summary 83
References 83
CHAPTER 3 WAVEGUIDE EXPERIMENTS TO CHARACTERIZE PROPERTIES
OF SNG AND DNG METAMATERIALS 87
Silvio Hrabar
3.1 Introduction 87
3.2 Basic Types of Bulk Metamaterials with Inclusions 88
3.2.1 Thin-Wire Epsilon-Negative (ENG) Metamaterial 88
3.2.2 SRR Array Mu-Negative (MNG) Metamaterial 89
3.2.3 DNG Metamaterial Based on Thin Wires and SRRs 91
3.3 Theoretical Analysis of Rectangular Waveguide Filled with General
Metamaterial 91
3.4 Investigation of Rectangular Waveguide Filled with 2D Isotropic ENG
Metamaterial 96
3.5 Investigation of Rectangular Waveguide Filled with 2D Isotropic MNG
Metamaterial 99
3.6 Investigation of Rectangular Waveguide Filled with 2D Uniaxial MNG
Metamaterial 100
3.7 Investigation of Rectangular Waveguide Filled with 2D Isotropic DNG
Metamaterial 105
3.8 Investigation of Subwavelength Resonator 106
3.9 Conclusions 110
References 110
CHAPTER 4 REFRACTION EXPERIMENTS IN WAVEGUIDE
ENVIRONMENTS 113
Tomasz M. Grzegorczyk, Jin Au Kong, and Ran Lixin
4.1 Introduction 113
4.2 Microscopic and Macroscopic Views of Metamaterials 114
4.2.1 Microscopic View: Rods and Rings as Building Blocks of
Metamaterials 114
4.2.2 Macroscopic View: Effective Medium with Negative Constitutive
Parameters 116
4.2.2.1 Modeling Metamaterials 116
4.2.2.2 Properties of Metamaterials 118
4.3 Measurement Techniques 123
4.3.1 Experimental Constraints 123
4.3.1.1 Obtaining a Plane-Wave Incidence 123
4.3.1.2 Contacting Issue with Waveguide Walls 125
4.3.2 Measurements of Various Rings 125
4.3.2.1 Axially Symmetric SRR 125
4.3.2.2 Omega () SRR 128
CONTENTS ix
4.3.2.3 Solid-State Structure 131
4.3.2.4 S Ring 135
4.4 Conclusion 138
Acknowledgments 138
References 139
SECTION II
TWO-DIMENSIONAL PLANAR NEGATIVE-INDEX STRUCTURES 141
CHAPTER 5 ANTENNA APPLICATIONS AND SUBWAVELENGTH FOCUSING
USING NEGATIVE-REFRACTIVE-INDEX TRANSMISSION LINE
STRUCTURES 143
George V. Eleftheriades
5.1 Introduction 143
5.2 Planar Transmission Line Media with Negative Refractive Index 144
5.3 Zero-Degree Phase-Shifting Lines and Applications 145
5.3.1 Nonradiating Metamaterial Phase-Shifting Lines 149
5.3.2 Series-Fed Antenna Arrays with Reduced Beam Squinting 150
5.3.3 Broadband Wilkinson Balun Using Microstrip Metamaterial
Lines 153
5.3.4 Low-Profile and Small Ring Antennas 157
5.4 Backward Leaky-Wave Antenna Radiating in Its Fundamental Spatial
Harmonic 160
5.5 Superresolving NRI Transmission Line Lens 162
5.6 Detailed Dispersion of Planar NRI-TL Media 164
Acknowledgments 167
References 167
CHAPTER 6 RESONANCE CONE ANTENNAS 171
Keith G. Balmain and Andrea A. E. L¨ uttgen
6.1 Introduction 171
6.2 Planar Metamaterial, Corner-Fed, Anisotropic Grid Antenna 172
6.3 Resonance Cone Refraction Effects in a Low-Profile Antenna 181
6.4 Conclusions 189
Acknowledgments 189
References 189
CHAPTER 7 MICROWAVE COUPLER AND RESONATOR APPLICATIONS OF NRI
PLANAR STRUCTURES 191
Christophe Caloz and Tatsuo Itoh
7.1 Introduction 191
7.2 Composite Right/Left-Handed Transmission Line Metamaterials 192
7.2.1 Left-Handed Transmission Lines 192
7.2.2 Composite Right/Left-Handed Structures 192
7.2.3 Microwave Network Conception and Characteristics 195
7.2.4 Microstrip Technology Implementation 197
x CONTENTS
7.3 Metamaterial Couplers 198
7.3.1 Symmetric Impedance Coupler 198
7.3.2 Asymmetric Phase Coupler 202
7.4 Metamaterial Resonators 205
7.4.1 Positive, Negative, and Zero-Order Resonance in CRLH
Resonators 205
7.4.2 Zero-Order Antenna 207
7.4.3 Dual-Band Ring Antenna 208
7.5 Conclusions 209
References 209
PART II
ELECTROMAGNETIC BANDGAP (EBG) METAMATERIALS 211
SECTION I
THREE-DIMENSIONAL VOLUMETRIC EBG MEDIA 213
CHAPTER 8 HISTORICAL PERSPECTIVE AND REVIEW OF FUNDAMENTAL
PRINCIPLES IN MODELING THREE-DIMENSIONAL PERIODIC
STRUCTURES WITH EMPHASIS ON VOLUMETRIC EBGs 215
Maria Kafesaki and Costas M. Soukoulis
8.1 Introduction 215
8.1.1 Electromagnetic (Photonic) Bandgap Materials or Photonic
Crystals 215
8.1.2 Left-Handed Materials or Negative-Index Materials 219
8.2 Theoretical and Numerical Methods 221
8.2.1 Plane-Wave Method 222
8.2.2 Transfer Matrix Method 225
8.2.3 Finite-Difference Time-Domain Method 228
8.3 Comparison of Different Numerical Techniques 232
8.4 Conclusions 233
Acknowledgments 233
References 234
CHAPTER 9 FABRICATION, EXPERIMENTATION, AND APPLICATIONS OF EBG
STRUCTURES 239
Peter de Maagt and Peter Huggard
9.1 Introduction 239
9.2 Manufacturing 241
9.2.1 Manufacture of 3D EBGs by Machining from the Solid 241
9.2.2 Manufacture of 3D EBGs by Stacking 242
9.2.3 Manufacture of 3D EBGs by Growth 244
9.2.4 Effect of Tolerances in Manufacture of EBGs 245
9.3 Experimental Characterization of EBG Crystals 245
9.3.1 Surface Wave Characterization 246
CONTENTS xi
9.3.2 Complex Reflectivity Measurements 248
9.3.3 Terahertz Reflection and Transmission Measurements 250
9.4 Current and Future Applications of EBG Systems 252
9.5 Conclusions 256
References 257
CHAPTER 10 SUPERPRISM EFFECTS AND EBG ANTENNA APPLICATIONS 261
Boris Gralak, Stefan Enoch, and G´erard Tayeb
10.1 Introduction 261
10.2 Refractive Properties of a Piece of Photonic Crystal 262
10.2.1 General Hypotheses 262
10.2.1.1 Hypotheses on Electromagnetic Field 262
10.2.1.2 Hypotheses on Geometry 263
10.2.2 Rigorous Theory 264
10.2.2.1 Floquet–Bloch Transform and Decomposition of Initial
Problem 264
10.2.2.2 Field Coupling at Plane Interface 265
10.2.2.3 Propagation of Electromagnetic Energy 268
10.3 Superprism Effect 271
10.3.1 Group Velocity Effect 271
10.3.2 Phase Velocity Effect 272
10.3.3 Chromatic Dispersion Effect 273
10.4 Antenna Applications 276
10.5 Conclusion 281
References 282
SECTION II
TWO-DIMENSIONAL PLANAR EBG STRUCTURES 285
CHAPTER 11 REVIEW OF THEORY, FABRICATION, AND APPLICATIONS OF
HIGH-IMPEDANCE GROUND PLANES 287
Dan Sievenpiper
11.1 Introduction 287
11.2 Surface Waves 289
11.3 High-Impedance Surfaces 290
11.4 Surface Wave Bands 291
11.5 Reflection Phase 294
11.6 Bandwidth 295
11.7 Design Procedure 297
11.8 Antenna Applications 299
11.9 Tunable Impedance Surfaces 302
11.10 Reflective-Beam Steering 303
11.11 Leaky-Wave Beam Steering 305
11.12 Backward Bands 307
11.13 Summary 309
References 309
xii CONTENTS
CHAPTER 12 DEVELOPMENT OF COMPLEX ARTIFICIAL GROUND PLANES IN
ANTENNA ENGINEERING 313
Yahya Rahmat-Samii and Fan Yang
12.1 Introduction 313
12.2 FDTD Analysis of Complex Artificial Ground Planes 315
12.2.1 Bandgap Characterizations of an EBG Structure 315
12.2.2 Modal Diagram and Scattering Analysis of EBG Structure 317
12.3 Various Complex Artificial Ground-Plane Designs 319
12.3.1 Parametric Study of EBG Ground Plane 319
12.3.2 Polarization-Dependent EBG (PDEBG) Surface Designs 321
12.3.3 Characterizations of Grounded Slab Loaded with Periodic
Patches 324
12.4 Applications of Artificial Ground Planes in Antenna Engineering 324
12.4.1 Enhanced Performance of Microstrip Antennas and Arrays 324
12.4.2 Dipole Antenna on EBG Ground Plane: Low-Profile Design 329
12.4.2.1 Comparison of PEC, PMC, and EBG Ground Planes 329
12.4.2.2 Operational Frequency Band of EBG Structure 331
12.4.3 Novel Surface Wave Antenna Design for Wireless
Communications 333
12.4.3.1 Antenna Performance 333
12.4.3.2 Radiation Mechanism 335
12.4.4 Low-Profile Circularly Polarized Antennas: Curl and Dipole
Designs 337
12.4.4.1 Curl Antenna on EBG Ground Plane 337
12.4.4.2 Single-Dipole Antenna Radiating CP Waves 339
12.4.5 Reconfigurable Wire Antenna with Radiation Pattern Diversity 341
12.5 Summary 346
References 346
CHAPTER 13 FSS-BASED EBG SURFACES 351
Stefano Maci and Alessio Cucini
13.1 Introduction 351
13.1.1 Quasi-Static Admittance Models 352
13.1.2 Chapter Outline 353
13.2 MoM Solution 354
13.2.1 Patch-Type FSS (Electric Current Approach) 354
13.2.2 Aperture-Type FSS (Magnetic Current Approach) 357
13.2.3 Dispersion Equation 357
13.3 Accessible Mode Admittance Network 358
13.3.1 Patch-Type FSS 359
13.3.2 Aperture-Type FSS 359
13.3.3 Dispersion Equation in Terms of Accessible Modes 360
13.4 Pole–Zero Matching Method for Dispersion Analysis 361
13.4.1 Dominant-Mode Two-Port Admittance Network 361
13.4.2 Diagonalization of FSS Admittance Matrix 363
13.4.3 Foster’s Reactance Theorem and Rational Approximation of
Eigenvalues 365
13.4.4 Poles and Zeros of FSS and Metamaterial Admittance 366
13.4.5 Analytical Form of Dispersion Equation 369
CONTENTS xiii
13.4.6 Examples 369
13.5 Conclusions 374
Acknowledgments 375
References 375
CHAPTER 14 SPACE-FILLING CURVE HIGH-IMPEDANCE GROUND
PLANES 377
John McVay, Nader Engheta, and Ahmad Hoorfar
14.1 Resonances of Space-Filling Curve Elements 379
14.2 High-Impedance Surfaces Made of Space-Filling Curve Inclusions 383
14.2.1 Peano Surface 383
14.2.1.1 Effects of Substrate Height and Interelement Spacing 385
14.2.2 Hilbert Surface 387
14.2.2.1 Hilbert Surface of Order 3: Experimental Results 389
14.2.2.2 Use of Space-Filling Curve High-Impedance Surfaces for
Thin Absorbing Screens 391
14.3 Use of Space-Filling Curve High-Impedance Surfaces in Antenna
Applications 393
14.4 Space-Filling Curve Elements as Inclusions in DNG Bulk Media 397
14.5 Conclusions 399
References 400
Index 403
Electromagnetic Metamaterials Physics and Engineering Explorations.part1

ص



[ 本帖最后由 drjiachen 于 2008-12-25 21:28 编辑 ]
Electromagnetic Metamaterials Physics and Engineering Explorations.part2-3

[ 本帖最后由 drjiachen 于 2008-12-25 21:22 编辑 ]
:27bb :27bb :27bb :27bb
metamaterial最近很火的 感谢大大分享好书
好書
這類書本及知識太少了
希望能多點資料學習
感謝樓主分享
metamaterial最近很火的 感谢大大分享好书
metamaterial最近很火的 感谢大大分享好书
GOOD!!!!下来看看!!!谢谢楼主分享!!!:31bb :31bb
大家都说好必然不会差:11bb :11bb
感谢楼主分享
:11bb :11bb :11bb :11bb :11bb
thank you for the job
好书!!!!!!!!!!!!!!!!!!!!!
好书啊!!!!!!!!!!!!!!!!!!!!!!!!!!
我来看看,楼主太好了,多谢!!!
谢谢分享,我下载收下了 ,呵 呵
谢谢分享.................................................
:9de:9de   貌似很新鲜的东西
谢谢
:29bb :29bb
:30bb :30bb :30bb :30bb
好书啊,正想看呢,多谢楼主分享,
谢谢分享  :17de :17de :17de :17de
找这本书好久了,谢谢斑竹哦~~~~
非常感谢楼主非常感谢楼主非常感谢楼主
11111111111111111111111
好书,谢谢分享!!!!!!!!!!!!!!!
这样的好东东是肯定要下来看看的。
好书,谢谢杰楼主的分享,!!!!!!!!!!!!!
谢谢楼主分享!好书,已收藏!!!
电磁材料是热点


下载下来看看


:30bb
這這 怎能不好好的推依下呢~ 太感恩了
如此好书,当然要收藏。
感谢楼主的无私奉献!!!
thanks:11bb :11bb :11bb :11bb
Many thanks :11bb :11bb :11bb :11bb
好东西,需要研究研究!
谢谢分享呀,我找这本书找了很久了。
:11bb :27bb :29bb :30bb
先睹為快
感谢政府,感谢党,感谢微波技术网!!!!
前沿科学  学习中! 谢谢!!!
metamaterial最近很火的 感谢大大分享好书
Electromagnetic Metamaterials: Physics and Engineering Explorations is my aspiration book
不错哟,好书啊。顶一个!
metamaterial最近很火的 感谢大大分享好书
:30bb  :30bb  :30bb
支持楼主发新书。感谢,感谢。
感谢您的无私。
谢谢谢谢往往往往往往往往往往
恩,让饿下来看看是个啥东西哈哈啊
谢谢了饿E
:27bb :27bb :27bb
谢谢分享~~~~~~~~~~~~~~~~~
当前电磁研究的热点啊。

谢谢
是经典书籍,非常感谢的~~~。。。
Thank you very much!
:18de 非常好的书,谢谢楼主分享!
谢谢楼主分享
。。。。。。。。。
谢谢!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!
新的很啊 不知道现在做这个的人多不多哦
:11bb :11bb :11bb
:31bb :31bb :31bb
metamaterial最近很火的 感谢大大分享好书
谢谢楼主的分享。。:18bb :18bb
不錯的好書分享
真是太多謝啦
good job
好书~~~~~~:11bb :11bb
非常感谢楼主!
非常感谢楼主!
關於超穎材料的好書!
4# drjiachen
:53bb
thanks
5# drjiachen

thanks for sharing
:50bb :53bb
看看!!!!!!!!!!
谢谢分享!!!!!!!!!!
:27bb 4# drjiachen
metamaterial最近很火的 感谢大大
信息来源:微网社区-微波技术门户网站 http://bbs.mwtee.com
原文链接:http://bbs.mwtee.com/viewthread.php?tid=16890&highlight=meta
好书啊,谢谢分享,收下了
不错的书呀
:13bb:27bb:21bb
看起來是好書一本啊

謝謝
thank you for the job
好书,谢谢了!
好书!!!!!!!!!!!!!!!!!!!!!
呵呵,这本书不错~我找了很久了~:30bb
谢谢楼主资料~
i need this book
谢谢分享
下来看看学习下~~~
下载时得自觉回复{:5_217:}
为什么最后一个扣2元?
:13bb:31bb:31bb:31bb
回复 4# drjiachen


看看啊
谢谢楼主的分享!!!
看看 {:6_939:}
看看Electromagnetic Metamaterials: Physics and Engineering Explorations
十分感谢,学习了。。。
好东西要顶的
先看看哈!谢谢!
非常感谢楼主, 这本书很有用
赞一个~~~~
回复 3# drjiachen


    感谢分享!
我下一个看看 不错的东西
好的。。。。。。
Thank you for your sharing~~
good book thanks
好东西
楼主好人啊
感谢楼主,找这个很久了,一直没找到下载的
感謝樓主分享!
3q!!!!!!!!!楼主
好东西,正需要,顶!!!!!!!!!
好好学习学习这本书
这是本很不错的书
thank you very much
感谢楼主分享
先看看吧,真麻烦
:53bb:53bb
metamaterial 的书,值得关注
谢谢分享!
good!! I  need this book now!
good book!
好资料,多谢楼主!
回复 drjiachen 的帖子

正好需要呢,太感谢了!{:7_1234:}
谢谢谢谢啊
{:7_1234:}{:7_1243:}
谢谢楼主分享
顶!
超材料是新的研究方向,很想了解
学习一下。。。。
有种预感,书很大、、、
不错  好好看看
非常不错的书啊,谢谢楼主分享!!
好东东,下来看看
thanks very much
学习学习哦
Thank you for sharing :46bb
很不错很不错
{:7_1255:}{:7_1250:}{:7_1262:}{:7_1270:}{:7_1273:}
{:7_1240:}{:7_1256:}{:7_1255:}{:7_1238:}{:7_1250:}{:7_1235:}
{:7_1235:}怎么不能解压
{:7_1234:}谢谢楼主分享
还是解压不了啊
这是好事。非常感谢您
谢谢分享
they are very famous guys.
看看
瞅瞅看…………
DDDDDDDDDDDDDDDDDDDDDDDD
感谢楼主的分享~~~~~~~
回来看看!!!
谢谢楼主
谢谢分享,看看先
谢谢分享.....
看看{:soso_e100:}
学习一下了。
感谢楼主的分享
我想看看怎么样
从内容上看,十分全面的解释了MTM
超材料很高大上啊
多谢分享
回复一下,多多学习!
Electromagnetic Metamaterials: Physics and Engineering Explorations
谢谢楼主!!!
反反复复反复反复
正在研究这一方面 感谢分享
好东西,谢谢分享
lhkhghjghfghgjc
what is it? and which application will be for this software
多谢分享。
好东西,谢谢分享
超材料很火啊
非常好的书籍
XIEXIE  
Thanks
爱上无法GV二点半是给的本人非
客服中心 搜索
关于我们
关于我们
关注我们
联系我们
帮助中心
资讯中心
企业生态
社区论坛
服务支持
资源下载
售后服务
推广服务
关注我们
官方微博
官方空间
官方微信
返回顶部