Quantum error correction enables continuous processor recalibration
Superconducting quantum processors suffer from subtle variations between individual qubits that require regular calibration — a process that involves testing different frequencies and amplitudes of microwave pulses. Researchers have found that quantum error correction mechanisms can simultaneously recalibrate the hardware on the fly, removing the need for separate calibration steps. This advance addresses one of the less prominent but significant hurdles on the road to practical quantum computing.
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