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Titlebook: Quantum Communication and Information Technologies; Alexander S. Shumovsky,Valery I. Rupasov Conference proceedings 2003 Kluwer Academic P

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1568-2609 departments of physics, electrical and electronic engineering, mathematics, and computer science seeking both an orientation as well as advanced training in the field.978-1-4020-1453-6978-94-010-0171-7Series ISSN 1568-2609
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Resonance Quantum Optics of Photonic Crystals, “deformed” ordinary and gap solitons. Both gap and composite solitons containing even a few excitations could be quite short to propagate through the absorbing atomic system without dissipation and should be associated with the self-induced transparency pulses in doped frequency gap media.
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1568-2609 teleportation, quantum communication channels based on entangled states, and the discovery of quantum computing algorithms. The present book addresses the physical foundations of the subject, as well as the technological problems, discussing such aspects as photonics, quantum imaging, engineered ent
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Schmidt-Mode Analysis of Entanglement for Quantum Information Studies,es as a measure of entanglement. We give an elementary illustration, as well as an overview of more complex calculations we have carried out in situations involving bipartite states in continuous Hilbert space.
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Theory of Atomic Hyperfine Structure,field. The analytically tractable solutions of the proposed equation are found for the problems of electron motion in the Coulomb field, in uniform magnetic field and in superposition of Coulomb and uniform magnetic fields.
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Photonic Crystals for Communications,e key property of photonic crystals that can be exploited for communication devices is their strong dispersion, which allows applications in pulse compression and wavelength selective devices. Examples for dispersive devices include coupled cavity and defect waveguides as well as the photonic crystal superprism.
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