Unraveling the role of disorderness in superconducting materials on qubit coherence

Ran Gao, Fuying Wu,Hantao Sun, Jianjun Chen,Hao Deng,Xizheng Ma,Xiaohe Miao, Zhanqian Song,X. Wan,Fei Wang, Tongsheng Xia, Mingsheng Ying, Chaofeng Zhang, Yuanming Shi,Hui‐Hai Zhao,Chunqing Deng

arXiv (Cornell University)(2023)

引用 0|浏览8
暂无评分
摘要
Introducing disorderness in the superconducting materials has been considered promising to enhance the electromagnetic impedance and realize noise-resilient superconducting qubits. Despite a number of pioneering implementations, the understanding of the correlation between the material disorderness and the qubit coherence is still developing. Here, we demonstrate the first and a systematic characterization of fluxonium qubits with the superinductors made from titanium-aluminum-nitride with varied disorderness. From qubit noise spectroscopy, the flux noise and the dielectric loss are extracted as a measure of the coherence properties. Our results reveal that the $1/f$ flux noise dominates the qubit decoherence around the flux-frustration point, strongly correlated with the material disorderness; while the dielectric loss remains low under a wide range of material properties. From the flux-noise amplitudes, the areal density ($\sigma$) of the phenomenological spin defects and material disorderness are found to be approximately correlated by $\sigma \propto \rho_{xx}^3$, or effectively $(k_F l)^{-3}$. This work has provided new insights on the origin of decoherence channels within superconductors, and could serve as a useful guideline for material design and optimization.
更多
查看译文
关键词
qubit coherence,disorderness
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要