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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Gate errors in solid-state quantum-computer architectures - art. no. 012312
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Gate errors in solid-state quantum-computer architectures - art. no. 012312

机译:固态量子计算机体系结构中的门错误-艺术。没有。 012312

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We theoretically consider possible errors in solid-state quantum computation due to the interplay of the complex solid-state environment and gate imperfections. In particular, we study two examples of gate operations in the opposite ends of the gate speed spectrum, an adiabatic gate operation in electron-spin-based quantum dot quantum computation and a sudden gate operation in Cooper-pair-box superconducting quantum computation. We evaluate quantitatively the nonadiabatic operation of a two-qubit gate in a two-electron double quantum dot. We also analyze the nonsudden pulse gate in a Cooper-pair-box-based quantum-computer model. In both cases our numerical results show strong influences of the higher excited states of the system on the gate operation, clearly demonstrating the importance of a detailed understanding of the relevant Hilbert-space structure on the quantum-computer operations. [References: 27]
机译:从理论上讲,由于复杂的固态环境和门缺陷的相互作用,我们在固态量子计算中考虑了可能的误差。特别地,我们研究了两个在栅极速度谱两端的栅极运算示例,即基于电子自旋的量子点量子计算中的绝热栅极运算和库珀对盒超导量子计算中的突然栅极运算。我们定量评估双电子双量子点中的两个量子位门的非绝热操作。我们还分析了基于库珀对盒的量子计算机模型中的非突然脉冲门。在这两种情况下,我们的数值结果都显示了系统的高激发态对门操作的强烈影响,清楚地表明了对量子计算机操作上的相关希尔伯特空间结构的详细理解的重要性。 [参考:27]

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