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This volume constitutes the proceedings of the tenth meeting of the International school on Condensed Matter Physics. Since 1980, this community of condensed matter scientists has gathered in Varna, Bulgaria, every two years, to review and discuss the development of various investigations in the field, to present the latest results, and to outline the most important trends in condensed matter science.The book reflects the development of the field, and points to the growing interest in the application of theoretical achievements and to the mutual inspirations of science and technology.
Semiconductor technologies are moving at such a fast pace that new materials are needed in all types of application. Manipulating the materials and their properties at atomic dimensions has become a must. This book presents the case of interlayer dielectrics materials whilst considering these challenges. Interlayer Dielectrics for Semiconductor Technologies cover the science, properties and applications of dielectrics, their preparation, patterning, reliability and characterisation, followed by the discussion of different materials including those with high dielctric constants and those useful for waveguide applications in optical communications on the chip and the package. * Brings together for the FIRST time the science and technology of interlayer deilectrics materials, in one volume * written by renowned experts in the field * Provides an up-to-date starting point in this young research field.
There is a major international interest in thin film materials and devices, Future Directions in Thin Film Science and Technology stimulated by important current and projected applications in many areas of information technology and other fields, constitutes the proceedings of the Ninth International School on Condensed Matter Physics. It features invited review articles by over 40 scientists of international repute, covering many aspects of thin film science and technology. Also included is a broad selection of shorter contributed papers by other participants, describing results of their recent research.The book will be of interest to postgraduate students and established scientists involved in the fabrication, characterisation, and applications of thin film materials and devices. The invited reviews will also be of value to final year undergraduates in physics, materials science, and electronic engineering studying many areas of contemporary solid state technology.
This book brings together detailed discussions by leading experts on the various innovative aspects of thin films growth, deposition and characterization techniques, and new thin film materials and devices. It addresses through the different viewpoints of the contributors, the major problem of thin films science - the relation between the energy of the condensing species and the resulting properties of the films. Some of the issues considered include energetic condensation, bombardment stabilization, pulsed electron beam ablation, orientation and self-organization of organic, ferroelectric and nanoparticle thin films. Several chapters focus on applications such as the recent developments in organic optoelectronics, large area electronic technology and superconducting thin film devices.
This volume comprises the expert contributions from the invited speakers at the 17th International Conference on Thin Films (ICTF 2017), held at CSIR-NPL, New Delhi, India. Thin film research has become increasingly important over the last few decades owing to the applications in latest technologies and devices. The book focuses on current advances in thin film deposition processes and characterization including thin film measurements. The chapters cover different types of thin films like metal, dielectric, organic and inorganic, and their diverse applications across transistors, resistors, capacitors, memory elements for computers, optical filters and mirrors, sensors, solar cells, LED's, transparent conducting coatings for liquid crystal display, printed circuit board, and automobile headlamp covers. This book can be a useful reference for students, researchers as well as industry professionals by providing an up-to-date knowledge on thin films and coatings.
The field of nonlinear optics has witnessed a tremendous evolution since its beginnings in the early sixties. Its frontiers have been extended in many direc tions and its techniques have intruded upon many areas of both fundamental and practical interest. The field itself has been enriched with many new phe nomena and concepts that have further extended its scope and strengthened its connection with other areas. As a consequence, it is becoming increasingly unrealistic to expect to cover the different facets and trends of this field in the lectures or proceed ings of a summer school, however advanced these may be. However much of the current progress and interest in this field springs to a large extent from the promise and expectation that highly performing all-optical devices that exploit and operate on the principles of nonlinear optics will constitute an important branch of future technology and will provide new alternatives in information processing and transmission. The conception of new devices, in general, requires an intricate and bold combination of facts and methods from most diverse fields, in order to perform functions and operations that fit into an overall technological ensemble.