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Quantum computing through electron propagation in edge states of quantum spin Hall systems

机译:通过电子在量子自旋霍尔系统的边缘态中的传播进行量子计算

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摘要

We propose to implement quantum computing by the on-demand control of the wave packets propagation in helical edge channels of the quantum spin Hall systems (QSHs). Two non-commutative single-qubit gates are realized by the gate voltages applied on the edge channels. The two-qubit controlled phase gate is implemented by the capacitive Coulomb interaction between two adjacent edge channels from two parallel QSHs. A universal set of quantum gates thus can be realized in an all-electrical way. It is also shown that the fidelity and the purity of the controlled phase gate can reach a high value, with both the time delay and the finite width of the wave packets taken into account.
机译:我们建议通过按需控制量子自旋霍尔系统(QSHs)的螺旋边缘通道中传播的波包来实现量子计算。通过施加在边缘通道上的栅极电压可实现两个非可交换单量子位栅极。通过两个并行QSH的两个相邻边缘通道之间的电容性库仑相互作用来实现两比特控制的相位门。因此可以以全电方式实现通用的量子门集。还显示出,在考虑了时间延迟和波包的有限宽度的情况下,受控相门的保真度和纯度可以达到较高的值。

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