单电子双量子点工作状态的最优控制

V. Reiher;Y. Bérubé-Lauzière
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引用次数: 1

摘要

双量子点器件受益于自旋和电荷量子比特的优点,同时提供了减轻其缺点的方法。仔细的门电压调制可以赋予器件更大的类自旋或类电荷动力学,前者产生较长的相干时间,后者产生高的电磁化率,用于电驱动的自旋旋转或与微波光子的相干相互作用。由于该体系结构是实现多功能物理量子比特的有力竞争者,因此改进其控制是构建大规模基于自旋的通用量子计算机的关键一步。我们表明,使用梯度上升脉冲工程算法产生的最优控制脉冲可以产生比使用线性方法更高保真度的操作状态转移。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimal Control of the Operating Regime of a Single-Electron Double Quantum Dot
The double-quantum-dot device benefits from the advantages of both the spin and charge qubits, while offering ways to mitigate their drawbacks. Careful gate voltage modulation can grant greater spinlike or chargelike dynamics to the device, yielding long coherence times with the former and high electrical susceptibility with the latter for electrically driven spin rotations or coherent interactions with microwave photons. As this architecture is a serious contender for the realization of a versatile physical qubit, improving its control is a critical step toward building a large-scale spin-based universal quantum computer. We show that optimal control pulses generated using the gradient ascent pulse engineering algorithm can yield higher fidelity operating regime transfers than can be achieved using linear methods.
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