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All-Microwave Leakage Reduction Units for Quantum Error Correction with Superconducting Transmon Qubits
J F Marques1,2, H Ali1,2, B M Varbanov1
1QuTech, Delft University of Technology, P.O. Box 5046, 2600 GA Delft, Netherlands.
Abstract:
Minimizing leakage from computational states is a challenge when using many-level systems like superconducting quantum circuits as qubits. We realize and extend the quantum-hardware-efficient, all-microwave leakage reduction unit (LRU) for transmons in a circuit QED architecture proposed by Battistel et al. This LRU effectively reduces leakage in the second- and third-excited transmon states with up to 99% efficacy in 220 ns, with minimum impact on the qubit subspace. As a first application in the context of quantum error correction, we show how multiple simultaneous LRUs can reduce the error detection rate and suppress leakage buildup within 1% in data and ancilla qubits over 50 cycles of a weight-2 stabilizer measurement.
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