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Nanoscale Phase Separation and Colossal Magnetoresistance, Elbio Dagotto


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Автор: Elbio Dagotto
Название:  Nanoscale Phase Separation and Colossal Magnetoresistance
ISBN: 9783642077531
Издательство: Springer
Классификация:



ISBN-10: 3642077536
Обложка/Формат: Paperback
Страницы: 459
Вес: 0.67 кг.
Дата издания: 18.12.2010
Серия: Springer Series in Solid-State Sciences
Язык: English
Размер: 234 x 156 x 25
Основная тема: Physics
Подзаголовок: The Physics of Manganites and Related Compounds
Ссылка на Издательство: Link
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Поставляется из: Германии
Описание: Condensed matter is one of the most active areas of research in physics. Ev- ery year new materials are discovered with properties that are as challenging as or more than those of the year before. The effort is led mainly by exper- imentalists, who systematically manage to prepare compounds with exotic new properties, including complex ground states involving nontrivial spin, charge, lattice, and orbital arrangements. This work is typically carried out by a relatively small number of researchers, compared with other disciplines, and the interaction between experimentalists and theorists is quite strong. It is a real pleasure for a theorist, like the author, to have experimental data with which to test proposed ideas in short time scales. This allows for a theory-experiment cross-fertilization that keeps the field very active. These are quite interesting times in condensed matter for sure. This book is devoted to the study of a family of materials known as man- ganites. As for other exotic compounds, the fast development of experiments has induced a rapid evolution of the main theoretical ideas. A considerable ef- fort, both on theory and experiments, has led to the currently much-accepted notion that nanoscale phase separation is at the heart of the behavior of elec- trons in these compounds. This point is described in detail in this book, with a plethora of experimental data, computer simulation results, and analytic calculations supporting that description.

Nanoscale Device Physics

Автор: Tiwari, Sandip
Название: Nanoscale Device Physics
ISBN: 0198759878 ISBN-13(EAN): 9780198759874
Издательство: Oxford Academ
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Цена: 68640.00 T
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Описание: The primary advanced textbook for the teaching of science and engineering of nanoscale devices as used in the semiconductor, electronics, magnetics, optics and electromechanics industry.

Giant Magnetoresistance (GMR) Sensors

Автор: Candid Reig; Susana Cardoso; Subhas Chandra Mukhop
Название: Giant Magnetoresistance (GMR) Sensors
ISBN: 364237171X ISBN-13(EAN): 9783642371714
Издательство: Springer
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Цена: 174150.00 T
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Описание: This book covers the theoretical and practical basics of giant magnetoresistance (GMR) sensors, which were initially used in hard disk drives, and which are now finding broader applications in space, automotive design, microelectronics and biotechnology.

Giant Magnetoresistance (GMR) Sensors

Автор: Candid Reig; Susana Cardoso; Subhas Chandra Mukhop
Название: Giant Magnetoresistance (GMR) Sensors
ISBN: 3642448100 ISBN-13(EAN): 9783642448102
Издательство: Springer
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Цена: 139310.00 T
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Описание: This book covers the theoretical and practical basics of giant magnetoresistance (GMR) sensors, which were initially used in hard disk drives, and which are now finding broader applications in space, automotive design, microelectronics and biotechnology.

Thermal Energy at the Nanoscale

Автор: Fisher Timothy S
Название: Thermal Energy at the Nanoscale
ISBN: 9814449784 ISBN-13(EAN): 9789814449786
Издательство: World Scientific Publishing
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Цена: 33790.00 T
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Описание: These lecture notes provide a detailed treatment of the thermal energy storage and transport by conduction in natural and fabricated structures. Thermal energy in two carriers, i.e. phonons and electrons -- are explored from first principles. For solid-state transport, a common Landauer framework is used for heat flow. Issues including the quantum of thermal conductance, ballistic interface resistance, and carrier scattering are elucidated. Bulk material properties, such as thermal and electrical conductivity, are derived from particle transport theories, and the effects of spatial confinement on these properties are established.

Nanoscale Microwave Engineering / Optical Control of Nanodevices

Автор: Tripon-Canselie
Название: Nanoscale Microwave Engineering / Optical Control of Nanodevices
ISBN: 1848215878 ISBN-13(EAN): 9781848215870
Издательство: Wiley
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Цена: 146730.00 T
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Описание: This text examines the characteristics and functions of microwave engineering on the nano-scale level. It addresses a variety of topics relating to industrial purposes, including miniaturization, function densification, 1D and 2D nanostructures, and their atomic structures.

Current at the Nanoscale

Название: Current at the Nanoscale
ISBN: 9814383732 ISBN-13(EAN): 9789814383738
Издательство: World Scientific Publishing
Цена: 68640.00 T
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Описание: Dealing with how electric currents behave at the nanometer scale, this title begins with a general description of electric currents at the macroscale. Then by considering the physical lengthscales relevant to electron flow, it is observed how the behavior of currents varies as they approach the nanoscale.

Monolithic Nanoscale Photonics-Electronics Integration in Silicon

Автор: Henry Radamson
Название: Monolithic Nanoscale Photonics-Electronics Integration in Silicon
ISBN: 0124199755 ISBN-13(EAN): 9780124199750
Издательство: Elsevier Science
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Цена: 49390.00 T
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Описание: Silicon technology is evolving rapidly, particularly in board-to-board or chip-to chip applications. This book describes the merging of photonics and electronics in silicon and other group IV elements. It presents the challenges, the limitations, and the upcoming possibilities of these developments.

Nanoscale thermoelectrics /

Автор: Wang, Xiaodong.
Название: Nanoscale thermoelectrics /
ISBN: 3319020110 ISBN-13(EAN): 9783319020112
Издательство: Springer
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Цена: 174150.00 T
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Описание: This book offers comprehensive coverage of thermoelectric materials and nanostructures. It provides the keys to understanding the theory underlying improvements in thermoelectric efficiency and describes a key enabling technology for energy applications.


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