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100426s2010 nyua ob 001 0 eng |
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|a UAMI
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|a Metamaterials :
|b classes, properties and applications /
|c Ethan J. Tremblay, editor.
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|a New York :
|b Nova Science Publishers,
|c c2010.
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|a 1 online resource (xi, 274 p.).
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|a text
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|a computer
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|a online resource
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|a Materials science and technologies
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|a Includes bibliographical references and index.
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|a Description based on print version record and CIP data provided by publisher; resource not viewed.
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|a METAMATERIALS: CLASSES, PROPERTIES AND APPLICATIONS ; METAMATERIALS: CLASSES, PROPERTIES AND APPLICATIONS ; CONTENTS ; PREFACE ; OPTICAL METAMATERIALS AS THE PLATFORM FOR A NOVEL GENERATION OF ULTRASENSITIVE CHEMICAL OR BIOLOGICAL SENSORS ; ABSTRACT ; 1. INTRODUCTION ; 2. SOME DEFINITIONS ; 3. ELECTROMAGNETIC METAMATERIALS IN SENSING ; 4. ADSORPTION ON NANOPLASMONIC STRUCTURES; 5. CATALYST PLUS: SURFACE VERSUS VOLUME ADSORPTION IN METAMATERIAL NANOCOMPOSITES ; 6. SURFACE PLASMON SENSORS USING NEGATIVE INDEX METAMATERIALS ; 7. MAGNETIC METAMATERIALS AS SENSORS: SPLIT RING RESONATORS.
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|a 8. ELECTRIC METAMATERIALS: NANOWIRE MESH MEDIA WITH NEGATIVE OR NEAR-ZERO PERMITTIVITY 9. DOUBLE NEGATIVE METAMATERIALS AS SENSORS: FISHNET MEDIA ; 10. SUBWAVELENGTH APERTURES WITH EXTRAORDINARY OPTICAL TRANSMISSION ; 11. ULTRATHIN PLANAR ELECTRIC METAMATERIALS AS SENSORS; 12. PHASE COMPENSATION AND SUBWAVELENGTH RESONANT CAVITIES; 13. TRANSFORMATION OPTICS AND CLOAKING FOR SENSING APPLICATIONS ; 14. CONCLUSION ; REFERENCES ; PATCH ANTENNA AND PERFECT ABSORBER WITH DENDRITIC CELL METAMATERIALS ; ABSTRACT ; 1. INTRODUCTION; 2. METAMATERIALS THEORY AND DESIGN.
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|a 2.1. Left-Handed Metamaterials Composed of Dendritic Cell and Wires 2.2. Unitary Dendritic Structure with Simultaneously Negative Permeability and Permittivity ; 3. APPLICATIONS IN MICROSTRIP PATCH ANTENNA ; 3.1. Enhanced Patch Antenna Performance with Dendritic Cell Metamaterials Substrate ; 3.1.1. Antenna design ; 3.1.2. Results ; 3.2. Anisotropic Negative Permeability Medium Cover for Patch Antenna ; 3.2.1. Antenna radiation principle ; 3.2.2. Negative permeability medium; 3.2.3. Antenna fabrication and results.
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|a 3.3. Microstrip Patch Antenna Based on Composite Right-Left Handed Transmission Line 3.3.1. Dual-frequency antenna based on unbalanced CRLH-TL ; 3.3.2. Center-fed circular epsilon-negative zeroth-order resonator antenna ; 3.4. The Study of Antennas Based on Composite Right-Left Handed Structure and Dendritic cell Metamaterials ; 3.4.1. Circular epsilon-negative zeroth-order resonator antenna by use of negative permeability metamaterials consisting of dendritic cell ; 3.4.2. High gain patch antenna with composite right-left handed structure and dendritic cell metamaterials.
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|a 4. PERFECT METAMATERIALS ABSORBER AND THEIR APPLICATIONS 4.1. Perfect Metamaterials Absorber ; 4.1.1. The design of planar metamaterials absorbers ; 4.1.2. Metamaterials absorber with dendritic cells ; 4.2. Patch Antenna Characteristics with Perfect Metamaterials Absorber Substrate ; 5. CONCLUSIONS ; ACKNOWLEDGMENTS ; REFERENCES ; FORM-INVARIANCE OF MAXWELL'S EQUATIONS IN COORDINATE TRANSFORMATIONS: METAMATERIALS AND NUMERICAL MODELS ; ABSTRACT ; 1. INTRODUCTION; 2. FORM-INVARIANCE OF MAXWELL'S EQUATIONS IN COORDINATE TRANSFORMATIONS: ANALYTICAL AND NUMERICAL FORMULATIONS.
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|a Metamaterials.
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|a Electronics
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|a Tremblay, Ethan J.
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|t Metamaterials
|d New York : Nova Science Publishers, c2010.
|z 9781616689582 (hardcover)
|w (DLC) 2010014099
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|a Materials science and technologies series.
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