论文标题
在可调超导电路中,在抑制不需要的Qubit相互作用的不良量子互动中的错误分析
Error analysis in suppression of unwanted qubit interactions for a parametric gate in a tunable superconducting circuit
论文作者
论文摘要
我们在实验上证明了基于可调耦合器的超导电路中的参数ISWAP门,以实现消除不必要的Qubit相互作用的连续可调节性。我们通过在耦合器上应用快速偏置调制脉冲来打开计算码头之间的参数交换相互作用,从而实现了两倍的ISWAP门。可控的交互可以提供额外的自由度来验证构建参数门的最佳条件。为了充分研究两分门的误差源,我们执行量子过程断层扫描测量和数值模拟作为不同的静态ZZ耦合强度。我们定量地计算在双Quibent Gate操作中的动态ZZ耦合寄生,并从反熔,动态ZZ耦合和高阶振动项中提取特定的门误差。我们的结果表明,主门误差来自逆转,而动态ZZ耦合和高阶振荡误差的增加会降低参数门的性能。这种方法以前尚未探索,它通过抑制不需要的量子相互作用提供了指导原理来提高参数ISWAP门的门效率。这种可控的相互作用以及参数调制技术对于串扰串扰的多Qualtix量子电路和量子仿真应用是可取的。
We experimentally demonstrate a parametric iSWAP gate in a superconducting circuit based on a tunable coupler for achieving a continuous tunability to eliminate unwanted qubit interactions. We implement the twoqubit iSWAP gate by applying a fast-flux bias modulation pulse on the coupler to turn on parametric exchange interaction between computational qubits. The controllable interaction can provide an extra degree of freedom to verify the optimal condition for constructing the parametric gate. Aiming to fully investigate error sources of the two-qubit gates, we perform quantum process tomography measurements and numerical simulations as varying static ZZ coupling strength. We quantitatively calculate the dynamic ZZ coupling parasitizing in two-qubit gate operation, and extract the particular gate error from the decoherence, dynamic ZZ coupling and high-order oscillation terms. Our results reveal that the main gate error comes from the decoherence, while the increase in the dynamic ZZ coupling and high-order oscillation error degrades the parametric gate performance. This approach, which has not yet been previously explored, provides a guiding principle to improve gate fidelity of parametric iSWAP gate by suppression of the unwanted qubit interactions. This controllable interaction, together with the parametric modulation technique, is desirable for crosstalk free multiqubit quantum circuits and quantum simulation applications.