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Silicon: Evolution and Future of a Technology

Editat de Paul Siffert, Eberhard Krimmel
en Limba Engleză Hardback – 26 iul 2004
Silicon. The evolution and development of humanity are commonly charac­ terized by the key words Stone Age, Bronze Age, and Iron Age; that is, characterized by materials. Curse or benefit to mankind? The discovery and utilization of semiconductors, particularly of silicon, revolutionized our liv­ ing conditions, society, social life, and maxims in a few years, even more than what happened during all the material-specified periods before. Per­ haps, one day, our descendants will call the period at whose beginning we live the Silicon Age. However, to be correct, the present period is character­ ized of the discovery and development of a whole bunch of new materials and their utilization. These materials are new alloys, ceramics, the plastics and synthetics produced by organic chemistry, composites, biomaterials, and the materials of microelectronics, nanotechnology, and space science. The materi­ als of microelectronics are silicon, other elemental semiconductors, compound semiconductors, and organic semiconductors. With regard to the interdepen­ dences of these materials and their utilization, silicon plays a central role as one of the base materials for electronics. Have we lived in the Silicon Age for only half a century and already jumped into a new age of synthetic organic materials for electronics? We do not know. The first intensive work on silicon started more than 50 years ago. One of the European semiconductor laboratories was installed by the industry in a centuries-old, little countryside castle in Pretzfeld, in the north-east of Bavaria, Germany.
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Specificații

ISBN-13: 9783540405467
ISBN-10: 3540405461
Pagini: 572
Ilustrații: XXII, 550 p.
Dimensiuni: 155 x 235 x 36 mm
Greutate: 0.98 kg
Ediția:2004
Editura: Springer Berlin, Heidelberg
Colecția Springer
Locul publicării:Berlin, Heidelberg, Germany

Public țintă

Research

Cuprins

1 Introduction: Silicon in All Its Forms.- 2 Silicon: the Semiconductor Material.- 3 Silicon: an Industrial Adventure.- 4 Polycrystalline Silicon Films for Electronic Devices.- 5 Silicon for Photovoltaics.- 6 Films by Molecular-Beam Epitaxy.- 7 Amorphous Hydrogenated Silicon, a-Si:H.- 8 Silicon-on-Insulator and Porous Silicon.- 9 Defect Spectroscopy.- 10 Silicon and Its Vital Role in The Evolution of Scanning Probe Microscopy.- 11 Defects, Diffusion, Ion Implantation, Recrystallization, and Dielectrics.- 12 Neutron Transmutation Doping (NTD) of Silicon.- 13 Transition Metal Impurities in Silicon.- 14 Hydrogen.- 15 Power Semiconductor Devices.- 16 Compensation Devices Break the Limit Line of Silicon.- 17 Integrated Circuits.- 18 Silicon Nanoelectronics: the Next 20 Years.- 19 Lithography for Silicon Nanotechnology.- 20 Silicon Sensors.- 21 Supplementing Silicon: the Compound Semiconductors.- 22 Quantum Computation by Electron Spin in SiGe Heterostructures.- 23 Carbon Nanotube Applications in Microelectronics.- 24 Creating Systems for Ambient Intelligence.- 25 Semiconductors with Brain.

Textul de pe ultima copertă

With topics ranging from epitaxy through lattice defects and doping to quantum computation, this book provides a personalized survey of the development and use of silicon, the basis for the revolutionary changes in our lives sometimes called "The Silicon Age." Beginning with the very first developments more than 50 years ago, it reports on all aspects of silicon and silicon technology up to its use in exciting new technologies, including a glance at possible future developments. A team of expert authors, many of them pioneers in the field, have written informative and stimulating contributions that will be of interest to all scientists working with silicon.

Caracteristici

Covers all aspects of the science and technology of silicon