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Dispersive Qubit Readout with Intrinsic Resonator Reset

Quantum Physics 2024-06-11 v2 Superconductivity Applied Physics

Abstract

A key challenge in quantum computing is speeding up measurement and initialization. Here, we experimentally demonstrate a dispersive measurement method for superconducting qubits that simultaneously measures the qubit and returns the readout resonator to its initial state. The approach is based on universal analytical pulses and requires knowledge of the qubit and resonator parameters, but needs no direct optimization of the pulse shape, even when accounting for the nonlinearity of the system. Moreover, the method generalizes to measuring an arbitrary number of modes and states. For the qubit readout, we can drive the resonator to 102\sim 10^2 photons and back to 103\sim 10^{-3} photons in less than 3κ13 \kappa^{-1}, while still achieving a T1T_1-limited assignment error below 1\%. We also present universal pulse shapes and experimental results for qutrit readout.

Keywords

Cite

@article{arxiv.2406.04891,
  title  = {Dispersive Qubit Readout with Intrinsic Resonator Reset},
  author = {M. Jerger and F. Motzoi and Y. Gao and C. Dickel and L. Buchmann and A. Bengtsson and G. Tancredi and C. W. Warren and J. Bylander and D. DiVincenzo and R. Barends and P. A. Bushev},
  journal= {arXiv preprint arXiv:2406.04891},
  year   = {2024}
}

Comments

8 pages, 6 figures

R2 v1 2026-06-28T16:57:14.951Z