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首页> 外文期刊>Journal of Modern Optics >Decoherence rates in large-scale quantum computers and macroscopic quantum systems
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Decoherence rates in large-scale quantum computers and macroscopic quantum systems

机译:大规模量子计算机和宏观量子系统中的退相干率

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摘要

Markovian regime decoherence effects in quantum computers are studied in terms of the fidelity for the situation where the number of qubits N becomes large. A general expression giving the decoherence time scale in terms of Markovian relaxation elements and expectation values of products of system fluctuation operators is obtained, which could also be applied to study decoherence in other macroscopic systems such as Bose condensates and superconductors. A standard circuit model quantum computer involving three-state lambda system ionic qubits is considered, with qubits localized around well-separated positions via trapping potentials. The centre of mass vibrations of the qubits act as a reservoir. Coherent one and two qubit gating processes are controlled by time-dependent localized classical electromagnetic fields that address specific qubits, the two qubit gating processes being facilitated by a cavity mode ancilla, which permits state interchange between qubits. With a suitable choice of parameters, it is found that the decoherence time can be made essentially independent of N.
机译:针对量子位N变大的情况下的保真度,研究了量子计算机中的马尔可夫政权去相干效应。获得了用马尔可夫松弛元素和系统涨落算子乘积的期望值给出退相干时间尺度的一般表达式,该表达式还可以用于研究其他宏观系统中的退相干,例如玻色子凝聚物和超导体。考虑了一个涉及三态λ系统离子量子位的标准电路模型量子计算机,量子位通过俘获电势定位在良好分离的位置周围。量子位的质点振动中心充当储存器。相干的一个和两个量子比特选通过程由寻址特定量子比特的时变局部经典电磁场控制,这两个量子比特选通过程由腔模辅助函数实现,该模式允许量子位之间的状态交换。发现通过适当选择参数,可以使去相干时间基本上独立于N。

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