论文标题
基于自旋波的可调式磁台之间的可调开关
Spin wave based tunable switch between superconducting flux qubits
论文作者
论文摘要
Quantum Computing硬件已在全球范围内受到关注,并最近取得了长足的进步。 YIG薄膜具有较低耗散的自旋波(镁)模式,可靠地控制量子信息处理。但是,尚未证明量子装置和YIG薄膜之间的相干耦合。在这里,我们提出了一种方案,以在Yig薄膜中的超导速度和磁通模式之间实现强耦合。与直接$ \ sqrt {n} $增强因子与Kittel模式或其他旋转合奏耦合,n旋转总数,当旋转的总空间依赖相位因子与量子磁盘与磁通量的磁通模式磁性耦合时,需要考虑额外的空间依赖相。为了避免由对称边界条件引起的耦合的不良取消,将COFEB薄层添加到Yig薄膜的一侧以打破对称性。我们的数值模拟表明,避免了量子量子和Yig薄膜中的旋转波之间的量子信息的交叉和相干传递。我们表明,YIG薄膜可以用作两个通量量子位之间的可调开关,它们的形状修饰了,它们之间的直接电感耦合小。我们的结果表明,可以在抑制不良的串扰的同时夫妻量Qub。
Quantum computing hardware has received world-wide attention and made considerable progress recently. YIG thin film have spin wave (magnon) modes with low dissipation and reliable control for quantum information processing. However, the coherent coupling between a quantum device and YIG thin film has yet been demonstrated. Here, we propose a scheme to achieve strong coupling between superconducting flux qubits and magnon modes in YIG thin film. Unlike the direct $\sqrt{N}$ enhancement factor in coupling to the Kittel mode or other spin ensembles, with N the total number of spins, an additional spatial dependent phase factor needs to be considered when the qubits are magnetically coupled with the magnon modes of finite wavelength. To avoid undesirable cancelation of coupling caused by the symmetrical boundary condition, a CoFeB thin layer is added to one side of the YIG thin film to break the symmetry. Our numerical simulation demonstrates avoided crossing and coherent transfer of quantum information between the flux qubits and the standing spin waves in YIG thin films. We show that the YIG thin film can be used as a tunable switch between two flux qubits, which have modified shape with small direct inductive coupling between them. Our results manifest that it is possible to couple flux qubits while suppressing undesirable cross-talk.