论文标题

量子点自旋链中的相干多旋转交换耦合

Coherent multi-spin exchange coupling in a quantum-dot spin chain

论文作者

Qiao, Haifeng, Kandel, Yadav P., Deng, Kuangyin, Fallahi, Saeed, Gardner, Geoffrey C., Manfra, Michael J., Barnes, Edwin, Nichol, John M.

论文摘要

半导体量子点中相邻电子旋转之间的海森堡交换耦合为量子信息处理和仿真提供了强大的工具。尽管到目前为止未实现,但延伸的海森堡旋转链可以使长距离量子信息传递和非平衡量子状态的产生。在这项工作中,我们在四个量子点中的所有邻邻旋转之间同时实现了连贯的交换耦合。实施同时交换耦合的主要挑战是交换耦合对门电压的非线性和非本地依赖性。通过静电模拟和理论建模的组合,我们表明,这一挑战主要是由于栅极脉冲过程中量子点的横向移动引起的。在此洞察力的基础上,我们开发了两个模型,可用于预测一组所需的交换耦合的禁闭门电压。尽管模型参数取决于所需的交换耦合的数量(表明除了侧向波函数偏移之外的效果很重要),但模型足以同时和独立地控制四倍量子点中的所有三个交换耦合。我们演示了两,三和四旋转交换振荡,我们的数据与模拟一致。

Heisenberg exchange coupling between neighboring electron spins in semiconductor quantum dots provides a powerful tool for quantum information processing and simulation. Although so far unrealized, extended Heisenberg spin chains can enable long-distance quantum information transfer and the generation of non-equilibrium quantum states. In this work, we implement simultaneous, coherent exchange coupling between all nearest-neighbor pairs of spins in a quadruple quantum dot. The main challenge in implementing simultaneous exchange couplings is the nonlinear and nonlocal dependence of the exchange couplings on gate voltages. Through a combination of electrostatic simulation and theoretical modeling, we show that this challenge arises primarily due to lateral shifts of the quantum dots during gate pulses. Building on this insight, we develop two models, which can be used to predict the confinement gate voltages for a desired set of exchange couplings. Although the model parameters depend on the number of exchange couplings desired (suggesting that effects in addition to lateral wavefunction shifts are important), the models are sufficient to enable simultaneous and independent control of all three exchange couplings in a quadruple quantum dot. We demonstrate two-, three-, and four-spin exchange oscillations, and our data agree with simulations.

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