Electron Spin Resonance and Related Phenomena in Low-Dimensional Structures
Marco . Ed(S): Fanciulli
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Description for Electron Spin Resonance and Related Phenomena in Low-Dimensional Structures
Hardback. Here is a discussion of the state of the art of spin resonance in low dimensional structures, such as two-dimensional electron systems, quantum wires, and quantum dots. Leading scientists report on recent advances and discuss open issues and perspectives. Editor(s): Fanciulli, Marco. Series: Topics in Applied Physics. Num Pages: 261 pages, biography. BIC Classification: PH. Category: (UP) Postgraduate, Research & Scholarly. Dimension: 243 x 166 x 23. Weight in Grams: 656.
The spin degree-of-freedom is o?ering a wide range of intriguing oppor- nities both in fundamental as well as in applied solid-state physics. When combined with the rich and fertile physics of low-dimensional semicondu- ingstructuresandwiththepossibilitytochange,forexample,carrierdensity, electric ?elds or coupling to other quantum systems in a controlled way, an extremely exciting and interesting research ?eld is opened. Most comm- cial electronic devices are based on spin-independent charge transport. In the last two decades, however, scientists have been focusing on the ambitious objective of exploiting the spin degree-of-freedom of the electron to achieve novel functionalities. Ferromagnetic semiconductors, spin transistors, sing- spin manipulations or ... Read more
The spin degree-of-freedom is o?ering a wide range of intriguing oppor- nities both in fundamental as well as in applied solid-state physics. When combined with the rich and fertile physics of low-dimensional semicondu- ingstructuresandwiththepossibilitytochange,forexample,carrierdensity, electric ?elds or coupling to other quantum systems in a controlled way, an extremely exciting and interesting research ?eld is opened. Most comm- cial electronic devices are based on spin-independent charge transport. In the last two decades, however, scientists have been focusing on the ambitious objective of exploiting the spin degree-of-freedom of the electron to achieve novel functionalities. Ferromagnetic semiconductors, spin transistors, sing- spin manipulations or ... Read more
Product Details
Format
Hardback
Publication date
2008
Publisher
Springer-Verlag Berlin and Heidelberg GmbH & Co. KG Germany
Number of pages
261
Condition
New
Series
Topics in Applied Physics
Number of Pages
261
Place of Publication
Berlin, Germany
ISBN
9783540793649
SKU
V9783540793649
Shipping Time
Usually ships in 15 to 20 working days
Ref
99-15
About Marco . Ed(S): Fanciulli
Marco Fanciulli is the Director of the CNR-INFM MDM (Materials and Devices for Microelectronics) National Laboratory and Full Professor at the Department of Material Science at the University of Milano Bicocca.
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