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Numerical simulation of leakage effect for quantum NOT operation on three-Josephson-junction flux qubit

机译:三约瑟夫森通量量子比特上量子NOT运算泄漏效应的数值模拟

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Superconducting flux qubits with three Josephson junctions are promising candidates for the building blocks of a quantum computer. We have applied the imaginary time evolution method to study the model of this qubit accurately by calculating its wavefunctions and eigenenergies. Because such qubits are manipulated with magnetic flux microwave pulses, they might be irradiated into non-computational states, which is called the leak-age effect. By the evolution of the density matrix of the qubit under either hard-shaped pi-pulse or Gaussian-shaped pi-pulse to carry out quantum NOT operation, it has been demonstrated that the leakage effect for a flux qubit is very small even for hard-shaped microwave pulses while Caussian-shaped pulses may suppress the leakage effect to a negligible level.
机译:具有三个约瑟夫逊结的超导通量量子位是量子计算机构建模块的有希望的候选者。通过计算虚函数的波函数和本征能,我们应用了虚假的时间演化方法来精确地研究该量子比特的模型。由于此类量子位是由磁通量微波脉冲操纵的,因此可能会被辐射到非计算状态,这称为泄漏时效。通过在硬形π脉冲或高斯形pi脉冲下量子比特的密度矩阵的演化以进行量子NOT运算,已证明即使对于硬磁通,量子比特的泄漏效应也很小。形的微波脉冲而高斯形的脉冲可以将泄漏效应抑制到微不足道的水平。

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