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Compact gate-based read-out of multiplexed quantum devices with a cryogenic CMOS active inductor

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arxiv 2102.04364 v2 pith:EKW4IUK6 submitted 2021-02-08 quant-ph cond-mat.mes-hall

classification quant-phcond-mat.mes-hall
keywords activecircuitcryogenicinductorreadoutenablingquantumqubits
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abstract

In the strive for scalable quantum processors, significant effort is being devoted to the development of cryogenic classical hardware for the control and readout of a growing number of qubits. Here we report on a cryogenic circuit incorporating a CMOS-based active inductor enabling fast impedance measurements with a sensitivity of 10 aF and an input-referred noise of 3.7 aF/sqrt(Hz). This type of circuit is especially conceived for the readout of semiconductor spin qubits. As opposed to commonly used schemes based on dispersive rf reflectometry, which require mm-scale passive inductors, it allows for a markedly reduced footprint (50$\mu$m $\times$ 60$\mu$m), facilitating its integration in a scalable quantum-classical architecture. In addition, its active inductor results in a resonant circuit with tunable frequency and quality factor, enabling the optimization of readout sensitivity.

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