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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Optimal control for fast and high-fidelity quantum gates in coupled superconducting flux qubits
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Optimal control for fast and high-fidelity quantum gates in coupled superconducting flux qubits

机译:耦合超导通量量子位中快速高保真量子门的最优控制

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摘要

We apply the quantum optimal control theory based on the Krotov method to implement single-qubit X and Z gates and two-qubit CNOT gates for inductively coupled superconducting flux qubits with fixed qubit transition frequencies and fixed off-diagonal qubit-qubit coupling. Our scheme shares an advantage with other directcoupling schemes in that it requires no additional coupler subcircuit and control lines. The control lines needed are only for themanipulation of individual qubits (e.g., a time-dependent magnetic flux or field applied on each qubit). The qubits are operated at the optimal coherence points and the gate operation times (less than 1 ns for single-qubit gates and ~ 2 ns for CNOTgates) are much shorter than the corresponding qubit decoherence time. A CNOT gate or other general quantum gates can be implemented in a single run of the pulse sequence rather than being decomposed into several single-qubit and several entangled two-qubit operations in series by composite pulse sequences.Quantum gates constructed via our scheme are all with very high fidelity (very lowerror) as our optimal control scheme takes into account the fixed qubit detuning and fixed two-qubit interaction as well as all other time-dependent magnetic-field-induced single-qubit interactions and two-qubit couplings. The effect of leakage to higher-energy-level states and the effect of qubit decoherence on the quantum-gate operations are also discussed.
机译:我们应用基于Krotov方法的量子最优控制理论,对具有固定量子位转换频率和固定非对角量子位-量子位耦合的电感耦合超导通量量子位实现单量子位X和Z栅极和两个量子位CNOT门。我们的方案与其他直接耦合方案有一个优点,因为它不需要额外的耦合器子电路和控制线。所需的控制线仅用于操纵各个量子位(例如,随时间变化的磁通量或施加在每个量子位上的磁场)。量子位在最佳相干点工作,并且门操作时间(单量子位门小于1 ns,CNOTgate约2 ns)比相应的量子位去相干时间短得多。 CNOT门或其他通用量子门可以在单个脉冲序列中实现,而不是通过复合脉冲序列分解为几个单量子位和两个纠缠二量子位运算。通过我们的方案构造的量子门都是由于我们的最优控制方案具有很高的保真度(非常低的误差),因此考虑了固定的量子位失谐和固定的两个量子位相互作用,以及所有其他随时间变化的磁场感应的单个量子位相互作用和两个量子位耦合。还讨论了泄漏到高能级状态的影响以及量子位去相干对量子门操作的影响。

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