E-Book, Englisch, Band 911, 624 Seiten, eBook
Reihe: Lecture Notes in Physics
Yamamoto / Semba Principles and Methods of Quantum Information Technologies
1. Auflage 2016
ISBN: 978-4-431-55756-2
Verlag: Springer Tokyo
Format: PDF
Kopierschutz: 1 - PDF Watermark
E-Book, Englisch, Band 911, 624 Seiten, eBook
Reihe: Lecture Notes in Physics
ISBN: 978-4-431-55756-2
Verlag: Springer Tokyo
Format: PDF
Kopierschutz: 1 - PDF Watermark
Zielgruppe
Research
Autoren/Hrsg.
Weitere Infos & Material
Quantum Information Theory for Quantum Communication.- Quantum Communication for the Ultimate Capacity and Security.- Quantum Communication Experiments Over Optical Fiber.- Spin-photon Entanglement in Semiconductor Quantum Dots: Towards Solid-state-based Quantum Repeaters.- Optical Lattice Clocks for Precision Time and Frequency Metrology.- Cold Atom Magnetometers.- Photonic Quantum Metrologies Using Photons -phase Super-sensitivity and Entanglement-enhanced Imaging.- Counting Statistics of Single-electron Transport.- Some Recent Progress for approximation algorithms.- Coherent Computing with Injection-Locked Laser Network.- A Degenerate Optical Parametric Oscillator Network for Coherent Computation.- Coherent Ising Machines with Quantum Measurement and Feedback Control.- Bose-Einstein Condensation: A Common Platform for Quantum Simulation Experiments.- Quantum Simulation Using Ultracold Ytterbium Atoms in an Optical Lattice.- Quantum Simulation with Trapped Ions?Experimental Realization of the Jaynes-Cummings-Hubbard Model?.- Equilibrium to Nonequilibrium Condensation in Driven-dissipative Semiconductor Systems.- High-orbital Exciton-polariton Condensation: Towards Quantum-simulator Applications.- Layered Architectures for Quantum Computers and Quantum Repeaters.- Analysis of an Atom-optical Architecture for Quantum Computation.- Optical Hybrid Quantum Information Processing.- Microwave Photonics on a Chip: Superconducting Circuits as Artificial Atoms for Quantum Information Processing.- Achievements and Outlook of Research on Quantum Information Systems using Superconducting Quantum Circuits.- Parametric amplifier and oscillator based on Josephson junction circuitry.- Superconductor-Diamond Hybrid Quantum System.- Spin Qubits with Semiconductor Quantum Dots.- Silicon Quantum Information Processing.- Quantum Information Processing Experiments using Nuclear and Electron Spins in Molecules.- Molecular Spin Qubits: Molecular Optimization of Synthetic Spin Qubits,Molecular Spin AQC and Ensemble Spin Manipulation Technology.