论文标题

通过高度可调的互间隧道耦合受控的量子点阵列分割

Controlled quantum dot array segmentation via a highly tunable interdot tunnel coupling

论文作者

Nurizzo, Martin, Jadot, Baptiste, Mortemousque, Pierre-André, Thiney, Vivien, Chanrion, Emmanuel, Dartiailh, Matthieu, Ludwig, Arne, Wieck, Andreas D., Bäuerle, Christopher, Urdampilleta, Matias, Meunier, Tristan

论文摘要

最近使用存储在量子点阵列中的电子旋转作为Qubit的旋转的示范有望开发可扩展的量子计算平台。因此,持续的努力是针对越来越大的阵列中量子点参数的精确控制,这代表了一个复杂的挑战。借助点间隧道屏障可以对系统进行分区,可以简化调整,并提供防止不必要的电荷位移。在三重量子点系统中,我们证明了对允许达到两个极端机制的纳秒控制率控制,大GHz隧道耦合以及相邻点之间的次Hz隔离。我们使用这种新颖的开发来隔离阵列的子部分,同时在系统的其余部分执行电荷位移和读数。在单位电池中实现的隧道耦合的控制程度应激发未来的协议开发,以进行调整,操纵和读数,包括此功能。

Recent demonstrations using electron spins stored in quantum dots array as qubits are promising for developing a scalable quantum computing platform. An ongoing effort is therefore aiming at the precise control of the quantum dots parameters in larger and larger arrays which represents a complex challenge. Partitioning of the system with the help of the inter-dot tunnel barriers can lead to a simplification for tuning and offers a protection against unwanted charge displacement. In a triple quantum dot system, we demonstrate a nanosecond control of the inter-dot tunnel rate permitting to reach the two extreme regimes, large GHz tunnel coupling and sub-Hz isolation between adjacent dots. We use this novel development to isolate a sub part of the array while performing charge displacement and readout in the rest of the system. The degree of control over the tunnel coupling achieved in a unit cell should motivate future protocol development for tuning, manipulation and readout including this capability.

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