激进的
量子退相干
化学物理
电子线路
主题(音乐)
量子
化学
物理
纳米技术
材料科学
量子力学
有机化学
声学
作者
Sun Un,S. E. de Graaf,Patrice Bertet,Sergey Kubatkin,Andrey Danilov
出处
期刊:Science Advances
[American Association for the Advancement of Science (AAAS)]
日期:2022-04-06
卷期号:8 (14): eabm6169-eabm6169
被引量:12
标识
DOI:10.1126/sciadv.abm6169
摘要
Quantum information technology puts stringent demands on the quality of materials and interfaces in the pursuit of increased device coherence. Yet, little is known about the chemical structure and origins of paramagnetic impurities that produce flux/charge noise that causes decoherence of fragile quantum states and impedes the progress toward large-scale quantum computing. Here, we perform high magnetic field electron paramagnetic resonance (HFEPR) and hyperfine multispin spectroscopy on α-Al 2 O 3 , a common substrate for quantum devices. In its amorphous form, α-Al 2 O 3 is also unavoidably present in aluminum-based superconducting circuits and qubits. The detected paramagnetic centers are immanent to the surface and have a well-defined but highly complex structure that extends over multiple hydrogen, aluminum, and oxygen atoms. Modeling reveals that the radicals likely originate from well-known reactive oxygen chemistry common to many metal oxides. We discuss how EPR spectroscopy might benefit the search for surface passivation and decoherence mitigation strategies.
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