Principles and Methods of Quantum Information Technologies [[electronic resource] /] / edited by Yoshihisa Yamamoto, Kouichi Semba
| Principles and Methods of Quantum Information Technologies [[electronic resource] /] / edited by Yoshihisa Yamamoto, Kouichi Semba |
| Edizione | [1st ed. 2016.] |
| Pubbl/distr/stampa | Tokyo : , : Springer Japan : , : Imprint : Springer, , 2016 |
| Descrizione fisica | 1 online resource (XI, 624 p. 258 illus., 226 illus. in color.) |
| Disciplina | 006.3843 |
| Collana | Lecture Notes in Physics |
| Soggetto topico |
Quantum computers
Spintronics Quantum physics Computers Quantum optics Quantum Information Technology, Spintronics Quantum Physics Theory of Computation Quantum Optics Quantum Computing |
| ISBN | 4-431-55756-3 |
| Formato | Materiale a stampa |
| Livello bibliografico | Monografia |
| Lingua di pubblicazione | eng |
| Nota di contenuto | 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. |
| Record Nr. | UNISA-996466794603316 |
| Tokyo : , : Springer Japan : , : Imprint : Springer, , 2016 | ||
| Lo trovi qui: Univ. di Salerno | ||
| ||
Principles and Methods of Quantum Information Technologies / / edited by Yoshihisa Yamamoto, Kouichi Semba
| Principles and Methods of Quantum Information Technologies / / edited by Yoshihisa Yamamoto, Kouichi Semba |
| Edizione | [1st ed. 2016.] |
| Pubbl/distr/stampa | Tokyo : , : Springer Japan : , : Imprint : Springer, , 2016 |
| Descrizione fisica | 1 online resource (XI, 624 p. 258 illus., 226 illus. in color.) |
| Disciplina | 006.3843 |
| Collana | Lecture Notes in Physics |
| Soggetto topico |
Quantum computers
Spintronics Quantum theory Computers Quantum optics Quantum Information Technology, Spintronics Quantum Physics Theory of Computation Quantum Optics Quantum Computing |
| ISBN | 4-431-55756-3 |
| Formato | Materiale a stampa |
| Livello bibliografico | Monografia |
| Lingua di pubblicazione | eng |
| Nota di contenuto | 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. |
| Record Nr. | UNINA-9910137374003321 |
| Tokyo : , : Springer Japan : , : Imprint : Springer, , 2016 | ||
| Lo trovi qui: Univ. Federico II | ||
| ||