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Silicon Optoelectronic Integrated Circuits

December 5, 2010 by · Leave a Comment 

Silicon Optoelectronic Integrated Circuits

The main subject of this book is circuit design of silicon optoelectronic integrated circuits (OEICs). The essential features of optical absorption are summarized, as is the device physics of photodetectors and their integration in modern bipolar, CMOS, and BiCMOS technologies. This information provides the basis for understanding the underlying mechanisms of the OEICs described in the main part of the book. In order to cover the topic comprehensively, Silicon Optoelectronic Integrated Circuits presents detailed descriptions of many OEICs for a wide variety of applications from various optical sensors, smart sensors, 3D-cameras, and optical storage systems (DVD) to fiber receivers in deep-sub-µm CMOS. Numerous elaborate illustrations help to elucidate the material.

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Simulation of Semiconductor Processes and Devices 2004: SISPAD 2004

This volume contains the proceedings of the 10th edition of the International Conference on Simulation of Semiconductor Processes and Devices (SISPAD 2004), held in Munich, Germany, on September 2-4, 2004. The conference program included 7 invited plenary lectures and 82 contributed papers for oral or poster presentation, which were carefully selected out of a total of 151 abstracts submitted from 14 countries around the world. Like the previous meetings, SISPAD 2004 provided a world-wide forum for the presentation and discussion of recent advances and developments in the theoretical description, physical modeling and numerical simulation and analysis of semiconductor fabrication processes, device operation and system performance. The variety of topics covered by the conference contributions reflects the physical effects and technological problems encountered in consequence of the progressively shrinking device dimensions and the ever-growing complexity in device technology.

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Semiconductor and Metal Nanocrystals: Synthesis and Electronic and Optical Properties

December 3, 2010 by · Leave a Comment 

Semiconductor and Metal Nanocrystals: Synthesis and Electronic and Optical Properties

Concentrates on chemically synthesized nanoparticles known as nanocrystal semiconductor quantum dots. Discusses applications include photovoltaic devices, electroluminescent devices, optical switching, optical amplification, and bio-labeling.

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Self-Organized Nanoscale Materials Reviews

December 2, 2010 by · Leave a Comment 

Self-Organized Nanoscale Materials

First to review nanoscale self-assembly employing such a wide variety of methods

Covers a wide variety physical, chemical and biological systems, phenomena, and applications

First overviews of nanotube biotechnology and bimetallic nanoparticles

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Redox Systems Under Nano-Space Control

December 1, 2010 by · Leave a Comment 

Redox Systems Under Nano-Space Control

The generation of novel redox systems under nano-space control is one of the most exciting fields in present organic, inorganic, and supramolecular chemistry. The authors have drawn together the newest information on the construction of such novel redox systems using nano-space control of complexation or molecular chain-induced spaces and metal- or self-assembled spaces through combining techniques in coordination, supramolecular, and bio-inspired chemistry. Such design on the nano level produces hybrid conjugated systems composed of transition and synthetic metals, metallohosts, redox-active self-assembled monolayers of helical peptides, DNA-directed metal arrays, photoactive antibody systems, chiral rotaxanes, and redox-active imprinted polymers. In the future, these systems will be the basis for novel selective electron-transfer reactions as well as new functional materials and catalysts.

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Quantum Dots

November 30, 2010 by · Leave a Comment 

Quantum Dots

This book covers many topics concerned with the man-made electronic systems called quantum dots, in particular: methods of creation, internal properties (electronic structure), directly observed properties (response to the experimental probes, e.g. light or electrodes), experimental methods and results, physical effects occuring in dots, theoretical models, computational methods, and future applications. The review part requires only basic knowledge on quantum mechanics and solid state physics.

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