Gate-Tunable Transmon Using Selective-Area-Grown Superconductor-Semiconductor Hybrid Structures on Silicon
arXiv:2202.10860 · doi:10.1103/PhysRevApplied.18.034042
Abstract
We present a gate-voltage tunable transmon qubit (gatemon) based on planar InAs nanowires that are selectively grown on a high resistivity silicon substrate using III-V buffer layers. We show that low loss superconducting resonators with an internal quality of can readily be realized using these substrates after the removal of buffer layers. We demonstrate coherent control and readout of a gatemon device with a relaxation time, , and dephasing times, and . Further, we infer a high junction transparency of from an analysis of the qubit anharmonicity.
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