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High-fidelity laser-free universal control of two trapped ion qubits

ORAL

Abstract

Universal control of multiple qubits -- the ability to entangle qubits and to perform arbitrary individual qubit operations -- is a fundamental resource for quantum computation, simulation, and networking. Here, we implement a new laser-free scheme for universal control of trapped ion qubits based on microwave magnetic fields and radiofrequency magnetic field gradients. We demonstrate high-fidelity entanglement and individual control by creating symmetric and antisymmetric two-qubit maximally entangled states with fidelities in the intervals [0.9983, 1] and [0.9964, 0.9988], respectively, at 68% confidence, corrected for state initialization error. This technique is robust against multiple sources of decoherence, usable with essentially any trapped ion species, and has the potential to perform simultaneous entangling operations on many pairs of ions without increasing control signal power or complexity.

Publication: R. Srinivas et al., arXiv:2102.12533

Presenters

  • Raghavendra Srinivas

    University of Oxford, University of Colorado, Boulder

Authors

  • Raghavendra Srinivas

    University of Oxford, University of Colorado, Boulder

  • Shaun C Burd

    National Institute of Standards and Technology Boulder, Stanford University

  • Hannah M Knaack

    University of Colorado, Boulder

  • Robert T Sutherland

    University of Texas at San Antonio, San Antonio, The University of Texas at San Antonio

  • Alex Kwiatkowski

    University of Colorado, Boulder

  • Scott Glancy

    National Institute of Standards and Technology Boulder

  • Emanuel Knill

    National Institute of Standards and Technology Boulder

  • David J Wineland

    University of Oregon

  • Dietrich Leibfried

    National Institute of Standards and Technology Boulder

  • Andrew C Wilson

    National Institute of Standards and Technology Boulder

  • David T Allcock

    University of Oregon

  • Daniel H Slichter

    National Institute of Standards and Technology Boulder