Optoelectronic Structures For Semiconductor Spintronics And Quantum Computation


Download Optoelectronic Structures For Semiconductor Spintronics And Quantum Computation PDF/ePub or read online books in Mobi eBooks. Click Download or Read Online button to get Optoelectronic Structures For Semiconductor Spintronics And Quantum Computation book now. This website allows unlimited access to, at the time of writing, more than 1.5 million titles, including hundreds of thousands of titles in various foreign languages.

Download

Optoelectronic Structures for Semiconductor Spintronics and Quantum Computation


Optoelectronic Structures for Semiconductor Spintronics and Quantum Computation

Author: Darron Kuan Hua Young

language: en

Publisher:

Release Date: 2002


DOWNLOAD





Semiconductor Spintronics and Quantum Computation


Semiconductor Spintronics and Quantum Computation

Author: D.D. Awschalom

language: en

Publisher: Springer Science & Business Media

Release Date: 2013-04-17


DOWNLOAD





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.

Semiconductor Spintronics


Semiconductor Spintronics

Author: Thomas Schäpers

language: en

Publisher: Walter de Gruyter GmbH & Co KG

Release Date: 2021-05-10


DOWNLOAD





This revised and expanded edition of the first comprehensive introduction to the rapidly-evolving field of spintronics covers ferromagnetism in nano-electrodes, spin injection, spin manipulation, and the practical use of these effects in next-generation electronics. Moreover, the book now also includes spin-based optics, topological materials and insulators, and the quantum spin Hall effect.