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Initialization of a spin qubit in a site-controlled nanowire quantum dot

机译:站点控制的纳米线量子点中自旋量子位的初始化

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A fault-tolerant quantum repeater or quantum computer using solid-state spin-based quantum bits will likely require a physical implementation with many spins arranged in a grid. Self-assembled quantum dots (QDs) have been established as attractive candidates for building spin-based quantum information processing devices, but such QDs are randomly positioned, which makes them unsuitable for constructing large-scale processors. Recent efforts have shown that QDs embedded in nanowires can be deterministically positioned in regular arrays, can store single charges, and have excellent optical properties, but so far there have been no demonstrations of spin qubit operations using nanowire QDs. Here we demonstrate optical pumping of individual spins trapped in site-controlled nanowire QDs, resulting in high-fidelity spin-qubit initialization. This represents the next step towards establishing spins in nanowire QDs as quantum memories suitable for use in a large-scale, fault-tolerant quantum computer or repeater based on all-optical control of the spin qubits.
机译:使用基于固态自旋的量子位的容错量子中继器或量子计算机可能需要物理实现,其中许多自旋排列在网格中。自组装量子点(QD)已被确立为构建基于自旋的量子信息处理设备的有吸引力的候选者,但是此类QD位置随机,这使其不适用于构建大型处理器。最近的努力表明,嵌入纳米线的量子点可以确定地放置在规则的阵列中,可以存储单电荷,并具有出色的光学性能,但是到目前为止,还没有使用纳米线量子点进行自旋量子位操作的演示。在这里,我们演示了受困于站点控制的纳米线QD中的单个自旋的光泵浦,从而导致了高保真自旋量子位的初始化。这代表了在纳米线量子点中建立自旋作为适用于基于自旋量子位的全光控制的大规模,容错量子计算机或转发器中使用的量子存储器的下一步。

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