Communication Capacity of Quantum Computation
نویسندگان
چکیده
منابع مشابه
Communication capacity of quantum computation.
By considering quantum computation as a communication process, we relate its efficiency to its classical communication capacity. This formalism allows us to derive lower bounds on the complexity of search algorithms in the most general context. It enables us to link the mixedness of a quantum computer to its efficiency and also allows us to derive the critical level of mixedness beyond which th...
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We present here a new approach to scalable quantum computing—a ‘qubus computer’—which realizes qubit measurement and quantum gates through interacting qubits with a quantum communication bus mode. The qubits could be ‘static’ matter qubits or ‘flying’ optical qubits, but the scheme we focus on here is particularly suited to matter qubits. There is no requirement for direct interaction between t...
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We introduce a proper framework of coding problems for a quantum memoryless channel and derive an asymptotic formula for the channel capacity, based upon the philosophy that any information theory shall be constructed in terms of observable quantities. Some general lower and upper bounds for the quantum channel capacity are also derived.
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Communication over a noisy quantum channel introduces errors in the transmission that must be corrected. A fundamental bound on quantum error correction is the quantum capacity, which quantifies the amount of quantum data that can be protected. We show theoretically that two quantum channels, each with a transmission capacity of zero, can have a nonzero capacity when used together. This unveils...
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We investigate multiparty communication scenarios where information is sent from several senders to several receivers. We establish a relation between the quantum capacity of multiparty communication channels and their distillability properties, which enables us to show that the quantum capacity of such channels is not additive.
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ژورنال
عنوان ژورنال: Physical Review Letters
سال: 2000
ISSN: 0031-9007,1079-7114
DOI: 10.1103/physrevlett.85.5448