量子位元
电荷量子位
磁通量子比特
相位量子位
物理
量子退相干
超导电性
超材料
声子
超导量子计算
消散
凝聚态物理
量子力学
量子
作者
Mutasem Odeh,Kadircan Godeneli,Eric Li,Rohin Tangirala,Haoxin Zhou,Xueyue Zhang,Zi-Huai Zhang,Alp Sipahigil
出处
期刊:Cornell University - arXiv
日期:2023-01-01
被引量:1
标识
DOI:10.48550/arxiv.2312.01031
摘要
The overhead to construct a logical qubit from physical qubits rapidly increases with the decoherence rate. Current superconducting qubits reduce dissipation due to two-level systems (TLSs) by using large device footprints. However, this approach provides partial protection, and results in a trade-off between qubit footprint and dissipation. This work introduces a new platform using phononics to engineer superconducting qubit-TLS interactions. We realize a superconducting qubit on a phononic bandgap metamaterial that suppresses TLS-mediated phonon emission. We use the qubit to probe its thermalization dynamics with the phonon-engineered TLS bath. Inside the phononic bandgap, we observe the emergence of non-Markovian qubit dynamics due to the Purcell-engineered TLS lifetime of 34 $\mu s$. We discuss the implications of these observations for extending qubit relaxation times through simultaneous phonon protection and miniaturization.
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