论文标题

在量子厅边缘的旋转旋转Qubit上的栅极控制的统一操作状态

Gate controlled unitary operation on flying spin qubits in quantum Hall edge states

论文作者

Shimizu, Takase, Nakamura, Taketomo, Hashimoto, Yoshiaki, Endo, Akira, Katsumoto, Shingo

论文摘要

在自旋分辨量子霍尔边缘状态(量子大厅铁磁体)上行驶的电子的自旋和轨道自由是最大的。因此,对这两个自由的统一操作是等效的,这意味着可以通过轨道通过非磁方法来操纵旋转。如果一个人沿磁化轴沿旋转的量化轴,则天顶角由自旋分离边缘的分配速率确定,而方位角则定义为边缘之间的相位差。利用这些特性,我们已经在量子厅铁磁体上的电子旋转上实现了电控制的单一操作。通过将电压施加到位于一个边缘的薄门上,通过旋转的半径控制自旋的天顶角。随后的方位角旋转通过栅极电压通过边缘通道之间的距离控制。这两个操作的组合构成了量子大厅边缘通道中旋转上的第一个系统电动操作。

Spin and orbital freedoms of electrons traveling on spin-resolved quantum Hall edge states (quantum Hall ferromagnets) are maximally entangled. The unitary operations on these two freedoms are hence equivalent, which means one can manipulate the spins with non-magnetic methods through the orbitals. If one takes the quantization axis of spins along the magnetization axis, the zenith angle is determined by the partition rate of spin-separated edges while the azimuth angle is defined as the phase difference between the edges. Utilizing these properties, we have realized electrically controlled unitary operation on the electron spins on the quantum Hall ferromagnets. The zenith angle of the spin was controlled through the radius of gyration at a corner by means of applying voltage to a thin gate placed at one edge. The subsequent rotation in the azimuth angle was controlled via the distance between the edge channels also by a gate voltage. The combination of the two operations constitutes the first systematic electric operation on spins in the quantum Hall edge channels.

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