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Active Leakage Cancellation in Single Qubit Gates

Quantum Physics 2025-09-30 v2

Abstract

The ability to perform fast and accurate rotations between the computational basis states of quantum bits is one of the most fundamental requirements for building a quantum computer. Because physical qubits generally contain more than two levels, faster gates often result in a higher leakage rate outside of the computational space. In this letter, we enhance the state-of-the-art single qubit gate by introducing active leakage cancellation. This is accomplished via a second drive tone near the leakage transition such that we cancel the leakage caused by the main drive. Furthermore, we describe a measurement sequence that can be used to calibrate the parameters of this leakage cancellation drive. Finally, we apply the technique to superconducting transmon qubits, suppressing the leakage below the 10510^{-5} level, and achieving coherence-limited gate infidelity of 7.5×1057.5\times 10^{-5}, for a 10 ns π/2\pi/2 gate and 196 MHz qubit anharmonicity.

Keywords

Cite

@article{arxiv.2503.14731,
  title  = {Active Leakage Cancellation in Single Qubit Gates},
  author = {Ben Chiaro and Yaxing Zhang},
  journal= {arXiv preprint arXiv:2503.14731},
  year   = {2025}
}

Comments

7 pages, 5 figures

R2 v1 2026-06-28T22:25:59.385Z