Driving qubit phase gates with sech shaped pulses

ORAL

Abstract

As shown in 1932 by Rozen and Zener, the Rabi model has a unique solution whereby, for a given pulse length or amplitude, a sech(t/sigma) shaped pulse can be used to drive complete oscillations around the Bloch sphere that are independent of detuning with only a resultant detuning-dependent phase accumulation. Using this property, single qubit phase gates and two-qubit CZ gates have been proposed [S Economou, E Barnes. PRB 91 (16), 161405, 2015]. In this work we explore the effect of different drive pulse shapes, i.e. square, Gaussian, and sech, as a function of detuning for Rabi oscillations of a superconducting transmon qubit. An arbitrary, single-qubit phase gate is demonstrated with the sech(t/sigma) pulse, and full tomography is performed to extract the fidelity. This is the first step towards high fidelity, low leakage two qubit CZ gates, and illustrates the efficacy of using analytic solutions of the qubit drive prior to optimal pulse shaping.

Authors

  • Junling Long

    National Institute of Standards and Technology

  • Ksiang-Sheng Ku

    NIST, National Institute of Standards and Technology

  • Xian Wu

    National Institute of Standards and Technology, NIST, NIST - Boulder

  • Russell E. Lake

    Department of Applied Physics, Aalto University, Finland, NIST, National Institute of Standards and Technology, QCD Labs, Department of Applied Physics, Aalto University, Finland

  • Edwin Barnes

    Department of Physics, Virginia Tech, Virginia Tech, Department of Physics, Virginia Tech, Blacksburg, Virginia 24061, USA

  • Sophia Economou

    Dept. of Physics, Virginia Tech, Virginia Tech

  • David Pappas

    NIST, National Institute of Standards and Technology