论文标题

通过拓扑元音的旋转Qubit的长距离耦合

Long-distance coupling of spin qubits via topological magnons

论文作者

Hetényi, Bence, Mook, Alexander, Klinovaja, Jelena, Loss, Daniel

论文摘要

我们考虑量子点中的两个遥远的旋转矩,两者都与边界处的二维拓扑铁磁体耦合。手性磁蛋白用于介导旋转Qubits之间的纠缠,实现了可伸缩量子计算体系结构的基本构建块:长距离两Q Qubit Gate。先前关于长距离耦合的建议与少量涉及抗谐振的耦合的提案,其中从magnonic带边缘引起的旋转频率使旋转频率失调可提供防止自发放松的保护。另一方面,拓扑镁模式位于两个巨型带之间,远离任何巨大的木谐振,促进了两个旋转量子的强烈且高度可调的耦合。即使量子和手性木元素之间的耦合在各种Qubit分裂方面具有共鸣,但如果量子诱导的Qubit弛豫是抗铁磁性的。提出了一种快速且高保真的长距离耦合协议,能够以$ 1 \,$ MHz Gate Speed和高达$ 99.9 \%$ $ fidelities在微米距离上实现自旋纠缠。所得的自旋纠缠可用作长期检测拓扑边缘磁子的探针。

We consider two distant spin qubits in quantum dots, both coupled to a two-dimensional topological ferromagnet hosting chiral magnon edge states at the boundary. The chiral magnon is used to mediate entanglement between the spin qubits, realizing a fundamental building block of scalable quantum computing architectures: a long-distance two-qubit gate. Previous proposals for long-distance coupling with magnons involved off-resonant coupling, where the detuning of the spin-qubit frequency from the magnonic band edge provides protection against spontaneous relaxation. The topological magnon mode, on the other hand, lies in-between two magnonic bands far away from any bulk magnon resonances, facilitating strong and highly tuneable coupling between the two spin qubits. Even though the coupling between the qubit and the chiral magnon is resonant for a wide range of qubit splittings, we find that the magnon-induced qubit relaxation is vastly suppressed if the coupling between the qubit and the ferromagnet is antiferromagnetic. A fast and high-fidelity long-distance coupling protocol is presented capable of achieving spin-qubit entanglement over micrometer distances with $1\,$MHz gate speed and up to $99.9\%$ fidelities. The resulting spin-qubit entanglement may be used as a probe for the long-sought detection of topological edge magnons.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源