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Recent Advances in Dielectric Materials

Editat de Ai Huang
en Limba Engleză Hardback – 20 oct 2009
This book describes various dielectric material properties, used in many kinds of research, and its industrial applications. A dielectric is a nonconducting substance and a poor conductor of electricity. They are often used in the construction of radio-frequency transmission lines. Most dielectric materials are solid (i.e., porcelain, glass, plastics). An important property of a dielectric is its ability to support an electrostatic field while dissipating minimal energy in the form of heat. The use of low dielectric constant (low-k) interdielectrics, which can lower line-to-line noise in interconnects, are described in this book. The preparation techniques, chemical structure and related properties of polymer dielectric materials are also discussed. The impact of high-K dielectric integration as a gate- and space-materials for nano scale MOSFETs are described, as well as the impact of high-k devices on the circuit performance. This book also explains the resonant transmission of electromagnetic waves through aperiodic dielectric microstructures. New technology, such as the orientation selective epitaxy (OSE) which enables epitaxial growth artificially choosing growth orientation on cerium dioxide is reviewed. In addition, the development of ElectroHydroDynamic (EHD), which establishes non-thermal plasmas on a dielectric surface, is also discussed. This book describes recent advances in the simulation techniques of dielectric photonic structures. In addition, how to obtain measurements of dielectric relaxation in dilute solutions of polar molecules in non-polar solvents are explained. The practical applications of oxides, obtained by modifying the dielectric constant, is described, as well as ways to form better dielectric composite materials.
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Specificații

ISBN-13: 9781606922668
ISBN-10: 1606922661
Pagini: 792
Ilustrații: tables & charts
Dimensiuni: 188 x 264 x 53 mm
Greutate: 1.82 kg
Editura: Nova Science Publishers Inc

Cuprins

Preface; Low-k Nanoporous Interdielectrics: Materials, Thin Film Fabrications, Structures and Properties; Understanding the Impact of High-K Gate & Spacer Dielectrics on the Device and Circuit Performance of Nanoscale MOSFETs; Orientation Selectivity Control by Surface Potential Modification in Oxide Thin Film Epitaxial Growth; Dielectric Response methods for diagnostics of Power Transformers; Symmetry-Induced Resonant Transmission of Electromagnetic Waves in Non-Periodic Dielectric Microstructures; Polymer Dielectric Materials; Effective Permittivity, Tunability, Loss and Commutation Quality of High Contrast Composites; Dielectric Materials for Electrohydrodynamic Actuators Dedicated to Aerodynamic Flow Control; Time-Domain Methods for the Simulation of Dielectric Nano-Photonic Structures; Dielectric Relaxation in Dilute Solutions of Polar Molecules in Non-Polar Solvents; Design and Development of Multiferroic Relaxors and layered Nanostructured Thin films; Modification in Dielectric Tunable Properties of Ferroelectrics for Microwave Device Applications; Dielectric Properties of Barium Titanate Filled Mullite Composites in the Low Frequency Region (10Hz-1MHz); Modal Dispersion Curves Of An Optical Waveguide Having Unconventional Core Cross Section Using Weak Guidance Approximation; Recent Advances in the Characterisation of Composite Dielectric Structures; Polymeric Materials for Some Electrical Applications; Dielectric and Magnetic Properties of Ferrite Composites and Ferrite Ceramics for Potential Applications in Antenna Miniaturisations; Index.