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The unprecedented control of coherence that can be exercised in quantum optics of atoms and molecules has stimulated increasing efforts in extending it to solid-state systems. One motivation to exploit the coherent phenomena comes from the emergence of the quantum information paradigm, however many more potential device applications ranging from novel lasers to spintronics are all bound up with issues in coherence. The book focuses on recent advances in the optical control of coherence in excitonic and polaritonic systems as model systems for the complex semiconductor dynamics towards the goal of achieving quantum coherence control in solid-state. Special attention is given to the optical control of spin coherence. These front edge research topics are presented in the form of review articles by leading scientists.
Coherence (Nuclear physics). --- Nanostructured materials. --- Quantum optics. --- Semiconductors. --- Coherence (Nuclear physics) --- Quantum optics --- Nanostructured materials --- Semiconductors --- Physics --- Physical Sciences & Mathematics --- Atomic Physics --- Nuclear Physics --- Electricity & Magnetism --- Nanoscience. --- Nanostructures. --- Nano science --- Nanoscale science --- Nanosciences --- Physics. --- Quantum physics. --- Electronics. --- Microelectronics. --- Quantum Optics. --- Electronics and Microelectronics, Instrumentation. --- Quantum Physics. --- Nanoscience --- Science --- Quantum theory. --- Quantum dynamics --- Quantum mechanics --- Quantum physics --- Mechanics --- Thermodynamics --- Electrical engineering --- Physical sciences --- Microminiature electronic equipment --- Microminiaturization (Electronics) --- Electronics --- Microtechnology --- Miniature electronic equipment --- Crystalline semiconductors --- Semi-conductors --- Semiconducting materials --- Semiconductor devices --- Crystals --- Solid state electronics --- Optics --- Photons --- Quantum theory --- Materials
Choose an application
The unprecedented control of coherence that can be exercised in quantum optics of atoms and molecules has stimulated increasing efforts in extending it to solid-state systems. One motivation to exploit the coherent phenomena comes from the emergence of the quantum information paradigm, however many more potential device applications ranging from novel lasers to spintronics are all bound up with issues in coherence. The book focuses on recent advances in the optical control of coherence in excitonic and polaritonic systems as model systems for the complex semiconductor dynamics towards the goal of achieving quantum coherence control in solid-state. Special attention is given to the optical control of spin coherence. These front edge research topics are presented in the form of review articles by leading scientists.
Quantum mechanics. Quantumfield theory --- Optics. Quantum optics --- Electronics --- quantumfysica --- quantumchemie --- elektronica --- micro-elektronica --- halfgeleiders
Choose an application
Choose an application
The unprecedented control of coherence that can be exercised in quantum optics of atoms and molecules has stimulated increasing efforts in extending it to solid-state systems. One motivation to exploit the coherent phenomena comes from the emergence of the quantum information paradigm, however many more potential device applications ranging from novel lasers to spintronics are all bound up with issues in coherence. The book focuses on recent advances in the optical control of coherence in excitonic and polaritonic systems as model systems for the complex semiconductor dynamics towards the goal of achieving quantum coherence control in solid-state. Special attention is given to the optical control of spin coherence. These front edge research topics are presented in the form of review articles by leading scientists.
Quantum mechanics. Quantumfield theory --- Optics. Quantum optics --- Electronics --- quantumfysica --- quantumchemie --- elektronica --- micro-elektronica --- halfgeleiders
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