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Quantum parallel processing manipulation using Gaussian pulses via an optical multiplexer

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We propose a new system of quantum signal and parallel processing using Gaussian pulses propagating within a nonlinear ring resonator system. To increase the channel capacity and security, the multiplexer is operated incorporating a quantum processing unit via an optical multiplexer. The transmitted part can be used to generate the high capacity packet of quantum codes within the series of micro ring resonators. The received part can be used to detect the quantum bits (qubits) via the optical link, which can be obtained via the end quantum processor. The reference states can be recognized by using the cloning unit, which is operated by the add/drop filter. Two add-drops that are in two parts can be used to be Alice and Bob, respectively, in quantum communication. Results obtained have shown that the multiplexed wavelengths can be formed by using the multiple operating systems, which is allowed the filtering at the end users (Bob). In application, the embedded system within the computer processing unit is available for quantum computer. Furthermore, such a concept is also available for hybrid communications, for instance, wire/wireless, satellite, which will be discussed in details.

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Progress in Electromagnetics Research Symposium, 2, 1664-1668, 2010

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