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Plasmonic Metamaterials from Fractal Structure

Abstract第4-5页
中文摘要第6-7页
Acknowledgements第7-17页
CHAPTER 1 Structure of the thesis第17-19页
CHAPTER 2 Extraordinary transmission through subwavelength holes第19-30页
    2.1 Introcduction第19页
    2.2 Surface Plasmons第19-23页
        2.2.1 What is Surface Plasmons第20-23页
    2.3 Extraordinary Transmission through Subwavelength Holes第23-26页
        2.3.1 Experimental Observation第23-26页
    2.4 Mimicking Surface Plasmons with Structured Surfaces第26-28页
    References第28-30页
CHAPTER 3 Extraordinary optical transmissions through fractal plasmonicmetamaterials第30-40页
    3.1 Plasmonic Metamaterials Based on Fractal Geometry第30-39页
        3.1.1 SPP Band Structures of Fractal Plasmonic Metamaterials第31-39页
    References第39-40页
CHAPTER 4 Topology-induced strong diamagnetic response of hollow structuredmetals at broadband microwave frequencies第40-69页
    4.1 Introduction and Background第40-42页
    4.2 Enriching Magnetic Responses by Artificial Magnetic Materials第42-52页
        4.2.1 Split-Ring Resonators第42-46页
        4.2.2 Metallodielectric Composites第46-52页
    4.3 Motivation第52页
    4.4 Experiments and Simulations第52-54页
    4.5 Results and Discussion第54-63页
    4.6 Conclusion第63-64页
    References第64-69页
CHAPTER 5 Photonic Wannier-Stark ladder from coupled electromagneticcavities第69-90页
    5.1 Introduction to Tight Binding Description of Photonic System第69-70页
    5.2 Photonic Bands from Cascaded Metallic Plates with Fractal Slits第70-76页
    5.3 Motivation第76-77页
    5.4 Materials and Methods第77-81页
    5.5 Results and Discussion第81-86页
    5.6 Conclusion第86-87页
    References第87-90页
CHAPTER 6 Electromagnetic characteristics of Hilbert curve based metamaterials第90-102页
    6.1 Introduction and Background第90-91页
    6.2 Two-Dimensional Hilbert Curve第91-92页
    6.3 Sample and Measurement第92-93页
    6.4 Results and Discussion第93-99页
    6.5 Conclusion第99-100页
    References第100-102页
CHAPTER 7 Summary and perspectives第102-105页
List of Publications第105-108页
中文详细摘要第108-115页

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