A single flux line with cryogenic filtering and compensated waveform synthesis enables high-fidelity XY/Z control and reset on fluxonium qubits while preserving >100 μs coherence.
Fpga-based electronic system for the control and readout of superconducting quantum processors
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MCMit proposes a constant-latency multi-control branch instruction, transformer and CNN discriminators, plus static MCM elimination and stochastic branching, evaluated on Qubic with QPU traces to cut latency by 70% and logical error rates by up to 9.4x.
citing papers explorer
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Unified Flux Control Architecture for Fluxonium Qubits
A single flux line with cryogenic filtering and compensated waveform synthesis enables high-fidelity XY/Z control and reset on fluxonium qubits while preserving >100 μs coherence.
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MCMit: Mid-Circuit Measurement Error Mitigation
MCMit proposes a constant-latency multi-control branch instruction, transformer and CNN discriminators, plus static MCM elimination and stochastic branching, evaluated on Qubic with QPU traces to cut latency by 70% and logical error rates by up to 9.4x.