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Robust implementation of quantum gates despite always-on exchange coupling in silicon double quantum dots

机译:尽管硅双量子点总是始终开启交换耦合,但稳健地实现量子门

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摘要

Addressability of spin qubits in a silicon double quantum dot setup in the (1,1) charge configuration relies on having a large difference between the Zeeman splittings of the electrons. When the difference is not sufficiently large, the rotating wave approximation becomes inaccurate. We consider a device working in this regime, with always-on exchange coupling, and describe how a controlled-Z (CZ) gate and arbitrary one-qubit gates which are robust against charge noise can be implemented by smoothly pulsing the microwave source while eliminating the cross talk. We find that the most signilicant deviations from the rotating wave approximation, which are analogous to the Bloch-Siegert shift in a two-level system, can be compensated using local virtual gales.
机译:在(1,1)充电配置中的硅双量子点设置中的旋转Qubits的可寻址依赖于在电子的塞曼分配之间具有很大的差异。当差异不够大时,旋转波近似变得不准确。我们考虑在该制度中工作的设备,具有始终开启的交换耦合,并描述如何通过在消除微波源时平滑地脉冲微波源来实现如何实现对电荷噪声稳健的控制 - Z(CZ)栅极和任意单个Qubit门。交叉谈话。我们发现,可以使用本地虚拟Gales补偿与双层系统中的Bloch-Siegert换档类似的旋转波近似的最敏感剂偏差。

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  • 来源
    《Physical review》 |2020年第15期|155301.1-155301.9|共9页
  • 作者单位

    Department of Physics University of Maryland Baltimore County Baltimore Maryland 21250 USA;

    Department of Physics University of Maryland Baltimore County Baltimore Maryland 21250 USA;

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