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Two-qubit atomic gates: spatio-temporal control of Rydberg interaction

机译:双量子比特原子门:里德堡相互作用的时空控制

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摘要

By controlling the temporal and spatial features of light, we propose a novel protocol to prepare two-qubit entangling gates on atoms trapped at close distance, which could potentially speed up the operation of the gate from the sub-micro to the nanosecond scale. The protocol is robust to variations in the pulse areas and the position of the atoms, by virtue of the coherent properties of a dark state, which is used to drive the population through Rydberg states. From the time-domain perspective, the protocol generalizes the one proposed by Jaksch and coworkers Jaksch et al., Phys. Rev. Lett., 2000, 85, 2208, with three pulses that operate symmetrically in time, but with different pulse areas. From the spatial-domain perspective, it uses structured light. We analyze the map of the gate fidelity, which forms rotated and distorted lattices in the solution space. Finally, we study the effect of an additional qubit to the gate performance and propose generalizations that operate with multi-pulse sequences.
机译:通过控制时间和空间特性的光,我们提出一个新的协议做好准备two-qubit卷入盖茨在原子被困近距离,这有可能加速从sub-micro门的操作纳秒。脉冲领域和位置的变化原子,由于相干属性一个黑暗的状态,用于驱动通过里德伯态。时域的角度来看,协议概括(Jaksch Jaksch和同事提出的一个et al .,。三个脉冲对称操作,但不同脉冲领域。空间域的角度来看,它使用结构化光。形成旋转和扭曲的晶格的吗解决方案空间。一个额外的量子位的性能和门建议操作的概括多脉冲序列。

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