A. E. Korolkov

Multiqubit GHZ state preparation with $^{171}\text{Yb}^+$ ions for frequency standards

A. E. Korolkov [1,2], I. V. Zalivako [1,2], A. S. Borisenko [1,2], V. N. Smirnov [1,2], P. A. Kamenskikh [1,2], I. A. Semerikov [1,2], K. Yu. Khabarova [1,2], N. N. Kolachevsky [1,2]

Abstract

Multiqubit Greenberger-Horne-Zeilinger (GHZ) state preparation is demonstrated on two to eight qubits in the chain of ten $^{171}Yb^+$ ions in the linear Paul trap with a sequence of single-qubit and two-qubit operations and pulsed dynamical decupling. Fidelity of the 8-qubit GHZ state is estimated to be $58.9 \pm 0.6\%$. The expected enhanced sensitivity of the parity oscillations phase to the analyzing pulse phase is observed. This result is a step towards a multi-ion optical clock with ytterbium ions with frequency averaging following $1/N$ scaling law in contrast to the slower $1/\sqrt{N}$ scaling for an ensemble of independent particles in case when the decoherence is dominated by the spontaneous decay.