K. W. Lee

Coherent Error Suppression in Multi-Qubit Entangling Gates

D. Hayes [1], S. M. Clark [1], S. Debnath [1], D. Hucul [1], I. V. Inlek [1], K. W. Lee [1], Q. Quraishi [1], C. Monroe [1]

Abstract

We demonstrate a simple pulse shaping technique designed to improve the fidelity of spin-dependent force operations commonly used to implement entangling gates in trapped-ion systems. This extension of the Mølmer-Sørensen gate can theoretically suppress the effects of certain frequency and timing errors to any desired order and is demonstrated through Walsh modulation of a two-qubit entangling gate on trapped atomic ions. The technique is applicable to any system of qubits coupled through collective harmonic oscillator modes.