Verlag: Dordrecht, Springer Netherland., 2003
ISBN 10: 1402018029 ISBN 13: 9781402018022
Sprache: Englisch
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In den Warenkorb16 x 24 cm. XXIV, 198 S. XXIV, 198 p. Hardcover. Versand aus Deutschland / We dispatch from Germany via Air Mail. Einband bestoßen, daher Mängelexemplar gestempelt, sonst sehr guter Zustand. Imperfect copy due to slightly bumped cover, apart from this in very good condition. Stamped. Sprache: Englisch.
Verlag: Materials Research Society, 1993
ISBN 10: 1558991859 ISBN 13: 9781558991859
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In den WarenkorbHardcover. Zustand: Very Good. Ex-Business Library, with three labels. Interior is clean and unmarked. Volume 290.
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Verlag: Springer Netherlands, Springer Netherlands Dez 2003, 2003
ISBN 10: 1402018029 ISBN 13: 9781402018022
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In den WarenkorbBuch. Zustand: Neu. Neuware -The history of scientific research and technological development is replete with examples of breakthroughs that have advanced the frontiers of knowledge, but seldom does it record events that constitute paradigm shifts in broad areas of intellectual pursuit. One notable exception, however, is that of spin electronics (also called spintronics, magnetoelectronics or magnetronics), wherein information is carried by electron spin in addition to, or in place of, electron charge. It is now well established in scientific and engineering communities that Moore's Law, having been an excellent predictor of integrated circuit density and computer performance since the 1970s, now faces great challenges as the scale of electronic devices has been reduced to the level where quantum effects become significant factors in device operation. Electron spin is one such effect that offers the opportunity to continue the gains predicted by Moore's Law, by taking advantage of the confluence of magnetics and semiconductor electronics in the newly emerging discipline of spin electronics. From a fundamental viewpoine, spin-polarization transport in a material occurs when there is an imbalance of spin populations at the Fermi energy. In ferromagnetic metals this imbalance results from a shift in the energy states available to spin-up and spin-down electrons. In practical applications, a ferromagnetic metal may be used as a source of spin-polarized electronics to be injected into a semiconductor, a superconductor or a normal metal, or to tunnel through an insulating barrier.Springer Verlag GmbH, Tiergartenstr. 17, 69121 Heidelberg 226 pp. Englisch.
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Verlag: Springer Netherlands, Springer Netherlands, 2010
ISBN 10: 904816513X ISBN 13: 9789048165131
Sprache: Englisch
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In den WarenkorbTaschenbuch. Zustand: Neu. Druck auf Anfrage Neuware - Printed after ordering - The history of scientific research and technological development is replete with examples of breakthroughs that have advanced the frontiers of knowledge, but seldom does it record events that constitute paradigm shifts in broad areas of intellectual pursuit. One notable exception, however, is that of spin electronics (also called spintronics, magnetoelectronics or magnetronics), wherein information is carried by electron spin in addition to, or in place of, electron charge. It is now well established in scientific and engineering communities that Moore's Law, having been an excellent predictor of integrated circuit density and computer performance since the 1970s, now faces great challenges as the scale of electronic devices has been reduced to the level where quantum effects become significant factors in device operation. Electron spin is one such effect that offers the opportunity to continue the gains predicted by Moore's Law, by taking advantage of the confluence of magnetics and semiconductor electronics in the newly emerging discipline of spin electronics. From a fundamental viewpoine, spin-polarization transport in a material occurs when there is an imbalance of spin populations at the Fermi energy. In ferromagnetic metals this imbalance results from a shift in the energy states available to spin-up and spin-down electrons. In practical applications, a ferromagnetic metal may be used as a source of spin-polarized electronics to be injected into a semiconductor, a superconductor or a normal metal, or to tunnel through an insulating barrier.
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In den Warenkorbhardcover. Zustand: Good. Connecting readers with great books since 1972! Used textbooks may not include companion materials such as access codes, etc. May have some wear or writing/highlighting. We ship orders daily and Customer Service is our top priority!
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In den WarenkorbZustand: New. In.
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Verlag: Springer Netherlands, Springer Netherlands, 2003
ISBN 10: 1402018029 ISBN 13: 9781402018022
Sprache: Englisch
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In den WarenkorbBuch. Zustand: Neu. Druck auf Anfrage Neuware - Printed after ordering - The history of scientific research and technological development is replete with examples of breakthroughs that have advanced the frontiers of knowledge, but seldom does it record events that constitute paradigm shifts in broad areas of intellectual pursuit. One notable exception, however, is that of spin electronics (also called spintronics, magnetoelectronics or magnetronics), wherein information is carried by electron spin in addition to, or in place of, electron charge. It is now well established in scientific and engineering communities that Moore's Law, having been an excellent predictor of integrated circuit density and computer performance since the 1970s, now faces great challenges as the scale of electronic devices has been reduced to the level where quantum effects become significant factors in device operation. Electron spin is one such effect that offers the opportunity to continue the gains predicted by Moore's Law, by taking advantage of the confluence of magnetics and semiconductor electronics in the newly emerging discipline of spin electronics. From a fundamental viewpoine, spin-polarization transport in a material occurs when there is an imbalance of spin populations at the Fermi energy. In ferromagnetic metals this imbalance results from a shift in the energy states available to spin-up and spin-down electrons. In practical applications, a ferromagnetic metal may be used as a source of spin-polarized electronics to be injected into a semiconductor, a superconductor or a normal metal, or to tunnel through an insulating barrier.
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In den WarenkorbZustand: New.
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In den WarenkorbZustand: New.
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In den WarenkorbZustand: New.
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In den WarenkorbZustand: New. pp. 224.
Verlag: Springer Berlin Heidelberg, 2010
ISBN 10: 3642075770 ISBN 13: 9783642075773
Sprache: Englisch
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Verlag: Kluwer Academic Publishers, 2003
ISBN 10: 1402018029 ISBN 13: 9781402018022
Sprache: Englisch
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In den WarenkorbZustand: New. Offers a comparative review of spin electronics ("spintronics") research and development activities in the US, Japan, and Western Europe. This book covers materials, fabrication and characterization of magnetic nanostructures, magnetism and spin control in magnetic nanostructures, magneto-optical properties of semiconductors, and magneto devices. Editor(s): Awschalom, David D.; Buhrman, Robert A. (Cornell University, Ithaca, NY, USA); Daughton, James M. (NVE Corporation, Eden prairie, MN, USA); Molnar, Stephan von (Center for Materials Research and Technology, Florida State University); Roukes, Michael Lee (Condensed Matter Physics, California Institute of Technology, Pasadena, USA). Num Pages: 222 pages, biography. BIC Classification: RBP; RBX; TJF. Category: (P) Professional & Vocational. Dimension: 235 x 155 x 14. Weight in Grams: 564. . 2003. Hardback. . . . .
Verlag: Springer Berlin Heidelberg, 2002
ISBN 10: 3540421769 ISBN 13: 9783540421764
Sprache: Englisch
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In den WarenkorbTaschenbuch. Zustand: Neu. Semiconductor Spintronics and Quantum Computation | D. D. Awschalom (u. a.) | Taschenbuch | xv | Englisch | 2010 | Springer-Verlag GmbH | EAN 9783642075773 | Verantwortliche Person für die EU: Springer Verlag GmbH, Tiergartenstr. 17, 69121 Heidelberg, juergen[dot]hartmann[at]springer[dot]com | Anbieter: preigu.
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In den WarenkorbPaperback. Zustand: Brand New. 245 pages. 9.00x6.00x0.51 inches. In Stock.
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In den WarenkorbZustand: New. pp. 228.
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Verlag: Springer Berlin Heidelberg, Springer Berlin Heidelberg Jun 2002, 2002
ISBN 10: 3540421769 ISBN 13: 9783540421764
Sprache: Englisch
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In den WarenkorbBuch. Zustand: Neu. Neuware -The past few decades of research and development in solid-state semicon ductor physics and electronics have witnessed a rapid growth in the drive to exploit quantum mechanics in the design and function of semiconductor devices. This has been fueled for instance by the remarkable advances in our ability to fabricate nanostructures such as quantum wells, quantum wires and quantum dots. Despite this contemporary focus on semiconductor 'quantum devices,' a principal quantum mechanical aspect of the electron - its spin has it accounts for an added quan largely been ignored (except in as much as tum mechanical degeneracy). In recent years, however, a new paradigm of electronics based on the spin degree of freedom of the electron has begun to emerge. This field of semiconductor 'spintronics' (spin transport electron ics or spin-based electronics) places electron spin rather than charge at the very center of interest. The underlying basis for this new electronics is the intimate connection between the charge and spin degrees of freedom of the electron via the Pauli principle. A crucial implication of this relationship is that spin effects can often be accessed through the orbital properties of the electron in the solid state. Examples for this are optical measurements of the spin state based on the Faraday effect and spin-dependent transport measure ments such as giant magneto-resistance (GMR). In this manner, information can be encoded in not only the electron's charge but also in its spin state, i. e.Springer Verlag GmbH, Tiergartenstr. 17, 69121 Heidelberg 332 pp. Englisch.
Verlag: Springer Berlin Heidelberg, 2002
ISBN 10: 3540421769 ISBN 13: 9783540421764
Sprache: Englisch
Anbieter: AHA-BUCH GmbH, Einbeck, Deutschland
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In den WarenkorbBuch. Zustand: Neu. Druck auf Anfrage Neuware - Printed after ordering - The past few decades of research and development in solid-state semicon ductor physics and electronics have witnessed a rapid growth in the drive to exploit quantum mechanics in the design and function of semiconductor devices. This has been fueled for instance by the remarkable advances in our ability to fabricate nanostructures such as quantum wells, quantum wires and quantum dots. Despite this contemporary focus on semiconductor 'quantum devices,' a principal quantum mechanical aspect of the electron - its spin has it accounts for an added quan largely been ignored (except in as much as tum mechanical degeneracy). In recent years, however, a new paradigm of electronics based on the spin degree of freedom of the electron has begun to emerge. This field of semiconductor 'spintronics' (spin transport electron ics or spin-based electronics) places electron spin rather than charge at the very center of interest. The underlying basis for this new electronics is the intimate connection between the charge and spin degrees of freedom of the electron via the Pauli principle. A crucial implication of this relationship is that spin effects can often be accessed through the orbital properties of the electron in the solid state. Examples for this are optical measurements of the spin state based on the Faraday effect and spin-dependent transport measure ments such as giant magneto-resistance (GMR). In this manner, information can be encoded in not only the electron's charge but also in its spin state, i. e.
Verlag: Springer Berlin Heidelberg, 2010
ISBN 10: 3642075770 ISBN 13: 9783642075773
Sprache: Englisch
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In den WarenkorbTaschenbuch. Zustand: Neu. Druck auf Anfrage Neuware - Printed after ordering - The past few decades of research and development in solid-state semicon ductor physics and electronics have witnessed a rapid growth in the drive to exploit quantum mechanics in the design and function of semiconductor devices. This has been fueled for instance by the remarkable advances in our ability to fabricate nanostructures such as quantum wells, quantum wires and quantum dots. Despite this contemporary focus on semiconductor 'quantum devices,' a principal quantum mechanical aspect of the electron - its spin has it accounts for an added quan largely been ignored (except in as much as tum mechanical degeneracy). In recent years, however, a new paradigm of electronics based on the spin degree of freedom of the electron has begun to emerge. This field of semiconductor 'spintronics' (spin transport electron ics or spin-based electronics) places electron spin rather than charge at the very center of interest. The underlying basis for this new electronics is the intimate connection between the charge and spin degrees of freedom of the electron via the Pauli principle. A crucial implication of this relationship is that spin effects can often be accessed through the orbital properties of the electron in the solid state. Examples for this are optical measurements of the spin state based on the Faraday effect and spin-dependent transport measure ments such as giant magneto-resistance (GMR). In this manner, information can be encoded in not only the electron's charge but also in its spin state, i. e.
Verlag: Kluwer Academic Publishers, 2003
ISBN 10: 1402018029 ISBN 13: 9781402018022
Sprache: Englisch
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In den WarenkorbZustand: New. Offers a comparative review of spin electronics ("spintronics") research and development activities in the US, Japan, and Western Europe. This book covers materials, fabrication and characterization of magnetic nanostructures, magnetism and spin control in magnetic nanostructures, magneto-optical properties of semiconductors, and magneto devices. Editor(s): Awschalom, David D.; Buhrman, Robert A. (Cornell University, Ithaca, NY, USA); Daughton, James M. (NVE Corporation, Eden prairie, MN, USA); Molnar, Stephan von (Center for Materials Research and Technology, Florida State University); Roukes, Michael Lee (Condensed Matter Physics, California Institute of Technology, Pasadena, USA). Num Pages: 222 pages, biography. BIC Classification: RBP; RBX; TJF. Category: (P) Professional & Vocational. Dimension: 235 x 155 x 14. Weight in Grams: 564. . 2003. Hardback. . . . . Books ship from the US and Ireland.