Antony Abhinandan, Gustafsson Martin V, Rajendran Anjaly, Benyamini Avishai, Ribeill Guilhem, Ohki Thomas A, Hone James, Fong Kin Chung
Department of Mechanical Engineering, Columbia University, New York, NY 10027, United States of America.
Raytheon BBN Technologies, Quantum Engineering and Computing Group, Cambridge, MA 02138, United States of America.
J Phys Condens Matter. 2021 Dec 21;34(10). doi: 10.1088/1361-648X/ac3e9d.
Ultra low-loss microwave materials are crucial for enhancing quantum coherence and scalability of superconducting qubits. Van der Waals (vdW) heterostructure is an attractive platform for quantum devices due to the single-crystal structure of the constituent two-dimensional (2D) layered materials and the lack of dangling bonds at their atomically sharp interfaces. However, new fabrication and characterization techniques are required to determine whether these structures can achieve low loss in the microwave regime. Here we report the fabrication of superconducting microwave resonators using NbSethat achieve a quality factor> 10. This value sets an upper bound that corresponds to a resistance of⩽192μΩwhen considering the additional loss introduced by integrating NbSeinto a standard transmon circuit. This work demonstrates the compatibility of 2D layered materials with high-quality microwave quantum devices.
超低损耗微波材料对于增强超导量子比特的量子相干性和可扩展性至关重要。范德华(vdW)异质结构由于其组成的二维(2D)层状材料的单晶结构以及在原子级尖锐界面处不存在悬空键,是量子器件的一个有吸引力的平台。然而,需要新的制造和表征技术来确定这些结构是否能在微波频段实现低损耗。在此,我们报告了使用NbSe制造超导微波谐振器,其品质因数>10。当考虑将NbSe集成到标准跨导电路中引入的额外损耗时,该值设定了一个上限,对应于电阻⩽192μΩ。这项工作证明了二维层状材料与高质量微波量子器件的兼容性。