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Nanomagnetism and Spintronics: Fabrication, Materials, Characterization and Applications

May 25, 2010 by · Leave a Comment 

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Nanomagnetism and spintronics are two close subfields of nanoscience, explaining the effect of substantial magnetic properties of matter when the materials fabrication is realized at a comparable length size. Nanomagnetism deals with the magnetic phenomena specific to the structures having dimensions in the submicron range. The fact that the electronic transport properties of materials are dependent on the magnetic properties’ artificial nanostructures, i.e., giant magnetoresistance (GMR) or tunneling magnetoresistance (TMR), has revolutionized spintronics science and technology. This book explains the concepts of nanomagnetism and spintronics by viewing the most recent research works from internationally distinguished research groups. Placing special emphasis on crucial fundamental and technical aspects of nanomagnetism and spintronics, it serves as a one-stop reference for universities offering postgraduate programs in nanotechnology or related disciplines. This unique book deals with all three stages required for conducting research in nanomagnetism and spintronics including fabrication, characterization and applications of nanomagnetic and spintronics materials, providing general concepts and an insightful overview of this subject for research students and scientists from different backgrounds investigating the multidisciplinary area of nanotechnology.

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Atomic-Scale Modeling of Nanosystems and Nanostructured Materials

May 24, 2010 by · Leave a Comment 

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The book covers a variety of applications of modern atomic-scale modeling of materials in the area of nanoscience and nanostructured systems. By highlighting the most recent achievements obtained within a single institute, at the forefront of material science studies, the authors are able to provide a thorough description of properties at the nanoscale. The areas covered are structural determination, electronic excitation behaviors, clusters on surface morphology, spintronics and disordered materials. For each application, the basics of methodology are provided, allowing for a sound presentation of approaches such as density functional theory (of ground and excited states), electronic transport and molecular dynamics in its classical and first-principles forms. The book is a timely collection of theoretical nanoscience contributions fully in line with current experimental advances.

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Physics, Chemistry And Application of Nanostructures: Reviews And Short Notes to Nanomeeting-2005, Minsk, belarus, 24-27 May, 2005

May 22, 2010 by · Leave a Comment 

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This comprehensive volume presents invited reviews and short notes with exciting new results obtained in fabrication study and application of nanostructures, which promise a new generation of electronic and optoelectronic devices. The rapid progress in nanoelectronics and optoelectronics, molecular electronics and spintronics, nanotechnology and quantum processing of information are covered.

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Future Trends in Microelectronics: The Nano, the Giga, and the Ultra

May 20, 2010 by · Leave a Comment 

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The continuing miniaturization in silicon devices has led to current research in such topics as Nanoelectronics, Quantum Cascade Lasers, Nanomaterials and applications in biology. In this book leading professionals in the semiconductor microelectronics field discuss the future evolution of their profession through questions such as:
* As the end of CMOS scaling is approaching, what kind of research does the silicon industry need to continue its expansion?
* What is its future beyond shrinking silicon devices?
* Is there practicality in such fashionable topics as quantum computing, molecular computing, spintronics, and similar research trends?
* What is the most likely future of microelectronis in the near and long term?

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Frontiers of Multifunctional Integrated Nanosystems: Proceedings of the NATO ARW on Frontiers of Molecular-scale Science and Technology of Nanocarbon, … II: Mathematics, Physics and Chemistry)

May 18, 2010 by · Leave a Comment 

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A compendium of novel information on molecular-scale science and the application of nanocarbon, nanosilicon and biopolymer integrated nanosystems. During the 20th century, molecular-scale science and nanotechnology developed rapidly, leading to the construction of innovative materials – nanosystens from molecules (fullerenes), supramolecules (nanotubes, peapods, polymers, biopolymers (DNA, protein and their complexes) and semiconductor nanoparticles (nano-Si, SiOx, Si/SiGe dots, metal nanowires). This book presents exciting new developments of the early 21st century. Significant progress has been made in nanotechnology of building blocks for integrated nanosystems, single and assembled molecules, nanoparticles characterisation, and multifunctional applications of nanosystems. The realisation and the application of novel multifunctional nanosystems in electronics, optics, biomedicine (nano-bioelectronic devices based on DNA and proteins, silicon nanocrystal memory devices, monolithically integrated silicon photonics, nanocapsules, biosensor nanosystems) are described by well known experts. This multi-disciplinary, scientific display of cutting-edge research across the entire spectrum of nanoscience and nanotechnology of inorganic, and organic systems, as well as systems for electronics photonics, and spintronics demonstrates that researching nanocarbon, nanosilicon, biomolecular integrated nanosystems, and developing their new applications, is a complex and exiting topic that will continue to attract scientists and engineers for many years to come.

BUY FROM AMAZON–>> Frontiers of Multifunctional Integrated Nanosystems: Proceedings of the NATO ARW on Frontiers of Molecular-scale Science and Technology of Nanocarbon, … II: Mathematics, Physics and Chemistry)

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