论文标题
使用SIC中的自旋Qubts绘制纳米磁体的杂散场
Mapping the stray fields of a nanomagnet using spin qubits in SiC
论文作者
论文摘要
我们报告说,在SIC中使用光学可寻址的旋转矩阵来探测由铁磁微结构在SIC晶体表面上的图案图案的磁性杂散场。流浪场导致自旋中心的共振频率变化。自旋共振是由微米大小的微波天线驱动的,该天线与磁元件相邻。进行天线的模式是为了确保与传统的毫米大小的电路相比,驱动微波场在本地和更有效地传递。对于两个不同的磁状态,在与磁元件的不同距离上观察到SIC中自旋中心的共振频率明显差异。我们的结果提供了一个晶圆规模的平台,通过在微米长度上部署本地微波场和流浪场景观来开发混合木量量化应用程序。
We report the use of optically addressable spin qubits in SiC to probe the magnetic stray fields generated by a ferromagnetic microstructure lithographically patterned on the surface of a SiC crystal. The stray fields cause shifts in the resonance frequency of the spin centers. The spin resonance is driven by a micrometer-sized microwave antenna patterned adjacent to the magnetic element. The patterning of the antenna is done to ensure that the driving microwave fields are delivered locally and more efficiently compared to conventional, millimeter-sized circuits. A clear difference in the resonance frequency of the spin centers in SiC is observed at various distances to the magnetic element, for two different magnetic states. Our results offer a wafer-scale platform to develop hybrid magnon-quantum applications by deploying local microwave fields and the stray field landscape at the micrometer lengthscale.