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Design and Analysis of Frequency Selective Surfaces(FSS) and Electromagnetic Behavior of Chiral Medium

DEDICATION第3-4页
ABSTRACT第4-5页
摘要第6-15页
CHAPTER 1 INTRODUCTION第15-28页
    1.1 FSS overview第15-17页
    1.2 Fabry Perot Resonator Antenna第17-19页
    1.3 Chiral Metamaterials第19-21页
    1.4 Chiral Medium第21-22页
    1.5 Geometrical Optics field第22-25页
    1.6 Maslov's Method第25-28页
CHAPTER 2 Band Pass FSS Design for Radome Applications第28-41页
    2.1 Introduction第28-29页
    2.2 Band Pass FSS Design第29-34页
        2.2.1 Geometry of the proposed structure第30-31页
        2.2.2 Design Procedure using Equivalent Circuit Method第31-33页
        2.2.3 Results and Discussions第33-34页
    2.3 Miniaturized Element FSS Design第34-38页
        2.3.1 Results and Discussions第35-38页
    2.4 Conclusions第38-41页
CHAPTER 3 Gain and Bandwidth Enhancement of the Antenna using EBG and FSS第41-73页
    3.1 Introduction第41-45页
    3.2 Feed Antenna第45-46页
    3.3 Fabry Perot Resonator Antenna Using FSS第46-55页
        3.3.1 Geometry of the proposed FSS第47-50页
        3.3.2 Fabry Perot Resonator antenna with FSS第50-51页
        3.3.3 Results and Discussion第51-55页
        3.3.4 Conclusions第55页
    3.4 Wide band EBG Resonator Antenna design using dual layers superstrates made of onedielectric material第55-65页
        3.4.1 Geometry of the proposed 1-D EBG structure第56-60页
        3.4.2 Wideband EBG resonator antenna with one dielectric superstrate第60-61页
        3.4.3 Results and Discussions for EBG FP antenna第61-65页
        3.4.4 Conclusions for EBG antenna with superstrate layers made of similar dielectric material第65页
    3.5 Wideband FP resonator antenna using EBG superstrate layers of different materials第65-73页
        3.5.1 Geometry of the proposed EBG structure第66-67页
        3.5.2 EBG resonator design using dual layers superstrate of different materials第67-69页
        3.5.3 Results and Discussions for FP antenna with EBG layers made of different dielectric material第69-72页
        3.5.4 Conclusions第72-73页
CHAPTER 4 Chiral Metamaterials第73-87页
    4.1 Introduction第74-75页
    4.2 Cross shape metamaterial design第75-79页
        4.2.1 Structure of the proposed cross shape第75-76页
        4.2.2 Results and Discussion for cross shape metamaterial第76-79页
    4.3 L-shaped metamaterials第79-84页
        4.3.1 Geometry of the L-shaped double sided metamaterial structure第81-82页
        4.3.2 Results and Discussion of L-shaped chiral metamaterials第82-84页
    4.4 Conclusions第84-87页
Chapter 5 Analysis Elliptical reflector antenna embedded in chiral medium第87-129页
    5.1 Introduction第87-88页
    5.2 PEC Elliptical Reflector in Chiral Medium第88-91页
    5.3 Fields around the focal points of the 3D elliptical reflector using GO and Maslov'smethod第91-102页
        5.3.1 Results and Discussions第99-102页
        5.3.2 Conclusions第102页
    5.4 PEC Elliptical Reflector in Chiral Medium Supporting Simultaneously NPV and PPV第102-103页
        5.4.1 Chiral medium and negative phase velocity第103页
    5.5 PEC Elliptical reflector placed in chiral medium supporting NPV and PPV第103-108页
        5.5.1 Results and Discussions第106-107页
        5.5.2 Conclusions第107-108页
    5.6 Reflector Coated with Isotropic Chiral Medium第108-111页
    5.7 Geometric Optics field for the PEC elliptical reflected coated with chiral medium第111-113页
        5.7.1 Introduction第111-113页
    5.8 Elliptical Reflector Coated with Chiral Medium第113-122页
        5.8.1 Results and Discussion第117-122页
        5.8.2 Conclusions第122页
    5.9 Focal Region Field of a PEMC Elliptical Reflector Using Maslov's Method第122-129页
        5.9.1 Results and Discussions第126-127页
        5.9.2 Conclusions of PEMC elliptical reflector in chiral medium第127-129页
CHAPTER 6 Focusing of Lens embedded in chiral medium第129-157页
    6.1 Introduction第129-132页
    6.2 Transmission from a dielectric slab placed in chiral medium第132-135页
    6.3 Focal region field of spherical lens in chiral medium using geometrical optics andMaslov's method第135-145页
        6.3.1 Results and Discussion第142-144页
        6.3.2 Conclusions第144-145页
    6.4 Elliptical lens placed in chiral medium第145-157页
        6.4.1 Elliptical lens with two dimensional structure第146-151页
        6.4.2 Results and Discussions第151-155页
        6.4.3 Conclusions第155-157页
CHAPTER 7 Conclusions第157-159页
References第159-173页
Acknowledgements第173-175页
List of publications第175-177页

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