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Post-fabrication frequency trimming of coplanar-waveguide resonators in circuit QED quantum processors

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arxiv 2302.10705 v1 pith:PQ4CSCFW submitted 2023-02-21 quant-ph cond-mat.supr-con

classification quant-phcond-mat.supr-con
keywords frequencyfabricationreadoutresonatorscircuitcoplanar-waveguidematchingmathrm
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abstract

We present the use of grounding airbridge arrays to trim the frequency of microwave coplanar-waveguide (CPW) resonators post fabrication. This method is compatible with the fabrication steps of conventional CPW airbridges and crossovers and increases device yield by allowing compensation of design and fabrication uncertainty with $100~\mathrm{MHz}$ range and $10~\mathrm{MHz}$ resolution. We showcase two applications in circuit QED. The first is elimination of frequency crowding between resonators intended to readout different transmons by frequency-division multiplexing. The second is frequency matching of readout and Purcell-filter resonator pairs. Combining this matching with transmon frequency trimming by laser annealing reliably achieves fast and high-fidelity readout across 17-transmon quantum processors.

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