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Manipulating Quantum Coherence in Solid State Systems [Hardcover]

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  • Category: Books (Technology & Engineering)
  • ISBN-10:  140206134X
  • ISBN-10:  140206134X
  • ISBN-13:  9781402061349
  • ISBN-13:  9781402061349
  • Publisher:  Springer
  • Publisher:  Springer
  • Pages:  234
  • Pages:  234
  • Binding:  Hardcover
  • Binding:  Hardcover
  • Pub Date:  01-Feb-2007
  • Pub Date:  01-Feb-2007
  • SKU:  140206134X-11-SPRI
  • SKU:  140206134X-11-SPRI
  • Item ID: 100825927
  • List Price: $109.99
  • Seller: ShopSpell
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This book features the proceedings of the NATO Advanced Study Institute Manipulating Quantum Coherence in Solid State Systems , held in Cluj-Napoca, Romania, August 2005, which presented a fundamental introduction to solid-state approaches to achieving quantum computation. This proceedings volume describes the properties of quantum coherence in semiconductor spin-based systems and the behavior of quantum coherence in superconducting systems.

Proceedings of the NATO Advanced Study Institute on Manipulating Quantum Coherence in Solid State Systems, Cluj-Napoca, Romania, 29 August - 8 September 2005The lectures at the NATO Advanced Study Institute Manipulating Quantum Coherence in Solid State Systems presented a fundamental introduction to three solid-state approaches to achieving quantum computation: semiconductor spin-based, semiconductor charge-based, and superconducting approaches. The purpose in bringing together lecturers and students in these disparate areas was to provide the opportunity for communication and cross-fertilization between these three areas, all focusing on the central goal of manipulating quantum coherence in solids. These proceedings present detailed introductions to the fundamentals of the ?rst approach and the third approach, and as such bring together a fundamental pedagogical treatment of the two areas which have progressed the furthest towards realizing a scalable system of manipulable qubits. Semiconductor spin-based approaches to quantum computation have made tremendousadvancesinthepast severalyears. Individual spinshavebeen succe- fully con?ned within self-assembled quantum dots and lithographically-formed quantum dots. Within the self-assembled quantum dots the spin lifetimes have been measured and shown to be longer than 1 ms at low temperature. Lithographic dots have been used to controllably reorient nuclear spins in order to lengthen the spin lifetimes. These exceptionally long spin lifetimes should permit many lC<
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