图书简介
The success of spintronics — the science and technology of storing, processing, sensing and communicating information using the quantum mechanical spin degree of freedom of an electron — is critically dependent on the ability to inject, detect and manipulate spins in semiconductors either by incorporating ferromagnetic materials into device architectures or by using external magnetic and electric fields. In spintronics, the controlled generation and manipulation of spin polarization in nonmagnetic semiconductors is required for the design of spin-sensitive devices ranging from spin-qubit hosts, quantum memory and gates, quantum teleporters, spin polarizers and filters, spin-field-effect-transistors, and spin-splitters, among others. One of the major challenges of spintronics is to control the creation, manipulation, and detection of spin polarized currents by purely electrical means. Another challenge is to preserve spin coherence in a device for the longest time or over the longest distance in order to produce reliable spintronic processors. These challenges remain daunting, but some progress has been made recently in overcoming some of the steepest obstacles. This book covers some of the recent advances in the field of spintronics using semiconductors.
Key Features:
o This book has an emphasis on applications which are vital to the commercial survival of any field of science and technology
o The authors are recognized experts who are the leaders in the topics on which they write
o They have provided a bird’s eye view of the field and offered their visions of where the field is headed
Electrical Control of Spin Orbit Interaction in Non-Classical Quantum Well Orientation; Room Temperature Defect-Engineered Spin Functionalities: Concept and Optimization; Onset of Spin Polarization and Anomalous Conductance in One-Dimensional Channels; Coherent Spin Transport in Inorganic Semiconductor Quantum Wires; Signatures of Spin Polarization in Four-Gate Quantum Point Contact Structures; Semiconductor Spintronic Devices and Circuits; Introduction to All-Electric Spin Field-Effect Transistor; Organic Spintronics: The First Decade and Beyond; Spintronics with Graphene and Van Der Waals Heterostructures;
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