CMOS-MEMS: Advanced Micro and Nanosystems
May 25, 2010 by AboutNanoWires.com · Leave a Comment
Product Description
Microstructures, electronics, nanotechnology – these vast fields of research are growing together as the size gap narrows and many different materials are combined. Current research, engineering sucesses and newly commercialized products hint at the immense innovative potentials and future applications that open up once mankind controls shape and function from the atomic level right up to the visible world without any gaps.
Sensor systems, microreactors, nanostructures, nanomachines, functional surfaces, integrated optics, displays, communications technology, biochips, human/machine interfaces, prosthetics, miniaturized medical and surgery equipment and many more opportunities are being explored.
This new series, Advanced Micro and Nano Systems, provides cutting-edge reviews from top authors on technologies, devices and advanced systems from the micro and nano worlds.
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Logic Design of NanoICS
May 20, 2010 by AboutNanoWires.com · Leave a Comment
Product Description
Logic Design of NanoICs introduces a new concept-computer-aided logic circuit design in nanometric space. This concept represents a breakthrough from two- to three-dimensional thinking about logic circuit design and imparts a new understanding of information processing at the atomic level. It presents a powerful new methodology and ready-to-go algorithms for circuit design and provides a set of models and practical recommendations that will help establish recognized standards and benchmarks for product testing, tuning, and implementation. Designed for specialists in nanoelectronics, this book will also serve as an outstanding textbook that with course adoptions, offers a wealth of ancillary materials.
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Mono-Cycle Photonics and Optical Scanning Tunneling Microscopy: Route to Femtosecond Ångstrom Technology
May 20, 2010 by AboutNanoWires.com · Leave a Comment
Product Description
Femtosecond Nanometer Technology deals with both the ultrashort laser-pulse technology in the few- to mono-cycle region and the laser-surface-controlled scanning-tunneling microscopy (STM) extending into the spatiotemporal extreme technology. The former covers the theory of nonlinear pulse propagation beyond the slowly-varying-envelope approximation, the generation and active chirp compensation of ultrabroadband optical pulses, the amplitude and phase characterization of few- to mono-cycle pulses, and the feedback field control for the mono-cycle-like pulse generation. In addition, the wavelength-multiplex shaping of ultrabroadband pulses, and the carrier-phase measurement and control of few-cycle pulses are described. The latter covers the CW-laser-excitation STM, the femtosecond-time-resolved STM and atomic-level surface phenomena controlled by femtosecond pulses.
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Enabling Technologies for MEMS and Nanodevices
May 18, 2010 by AboutNanoWires.com · Leave a Comment
Product Description
Microstructures, electronics, nanotechnology – these vast fields of research are growing together as the size gap narrows and many different materials are combined. Current research, engineering sucesses and newly commercialized products hint at the immense innovative potentials and future applications that open up once mankind controls shape and function from the atomic level right up to the visible world without any gaps.
Sensor systems, microreactors, nanostructures, nanomachines, functional surfaces, integrated optics, displays, communications technology, biochips, human/machine interfaces, prosthetics, miniaturized medical and surgery equipment and many more opportunities are being explored.
This new series, Advanced Micro & Nanosystems, provides cutting-edge reviews from top authors on technologies, devices and advanced systems from the micro and nano worlds.
BUY FROM AMAZON–>> Enabling Technologies for MEMS and Nanodevices
Microstructural Investigation and Analysis
May 17, 2010 by AboutNanoWires.com · Leave a Comment
- ISBN13: 9783527301218
- Condition: NEW
- Notes:
Product Description
Modern understanding of materials include the approach at the microscopic or nanometric level. In the best case, imaging at the atomic level is possible. These approaches are essential for instance in the exploration of interfaces, surfaces and defects in crystals. Several aspects can be explored, the microstructure, local element composition, and chemical bonds.
This book presents the state-of-the-art of modern investigation methods of materials.
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