English

Fast and Unconditional All-Microwave Reset of a Superconducting Qubit

Quantum Physics 2018-08-15 v1 Mesoscale and Nanoscale Physics

Abstract

Active qubit reset is a key operation in many quantum algorithms, and particularly in error correction codes. Here, we experimentally demonstrate a reset scheme of a three level transmon artificial atom coupled to a large bandwidth resonator. The reset protocol uses a microwave-induced interaction between the f,0|f,0\rangle and g,1|g,1\rangle states of the coupled transmon-resonator system, with g|g\rangle and f|f\rangle denoting the ground and second excited states of the transmon, and 0|0\rangle and 1|1\rangle the photon Fock states of the resonator. We characterize the reset process and demonstrate reinitialization of the transmon-resonator system to its ground state with 0.2%0.2\% residual excitation in less than 500ns500 \, \rm{ns}. Our protocol is of practical interest as it has no requirements on the architecture, beyond those for fast and efficient single-shot readout of the transmon, and does not require feedback.

Keywords

Cite

@article{arxiv.1801.07689,
  title  = {Fast and Unconditional All-Microwave Reset of a Superconducting Qubit},
  author = {Paul Magnard and Philipp Kurpiers and Baptiste Royer and Theo Walter and Jean-Claude Besse and Simone Gasparinetti and Marek Pechal and Johannes Heinsoo and Simon Storz and Alexandre Blais and Andreas Wallraff},
  journal= {arXiv preprint arXiv:1801.07689},
  year   = {2018}
}