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Transmission of classical and quantum information through a quantum memory channel with damping

机译:经典和量子信息通过带阻尼的量子存储通道传输

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We consider the transfer of classical and quantum information through a memory amplitude damping channel. Such a quantum channel is modeled as a damped harmonic oscillator, the interaction between the information carriers - a train of qubits - and the oscillator being of the Jaynes-Cummings kind. We prove that this memory channel is forgetful, so that quantum coding theorems hold for its capacities. We analyze entropic quantities relative to two uses of this channel. We show that memory effects improve the channel aptitude to transmit both classical and quantum information, and we investigate the mechanism by which memory acts in changing the channel transmission properties.
机译:我们考虑通过内存振幅阻尼通道传输经典信息和量子信息。这样的量子通道被建模为阻尼谐波振荡器,信息载体之间的相互作用-一系列的量子位-与Jaynes-Cummings类型的振荡器之间的相互作用。我们证明了该存储通道是健忘的,因此量子编码定理可以保持其容量。我们分析了与该渠道的两种用途有关的熵量。我们表明,记忆效应提高了传输经典信息和量子信息的信道适应性,并且我们研究了记忆在改变信道传输属性中所起作用的机制。

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