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NASA NTRS ยท 20060029421

Quantum information, computation, and technology at JPL

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Adami, C.. 2003-12-09. Quantum information, computation, and technology at JPL. https://ntrs.nasa.gov/citations/20060029421

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Fast and Accurate Greenberger-Horne-Zeilinger Encoding Using All-to-All Interactions

The ๐‘-qubit Greenberger-Horne-Zeilinger (GHZ) state is an important resource for quantum technologies. Here, we consider the task of GHZ encoding using all-to-all interactions, which prepares the GHZ state in a special case, and is furthermore useful for quantum error correction, interaction-rate enhancement, and transmitting information using power-law interactions. The naive protocol based on parallelizing CNOT gates takes O(1)-time of Hamiltonian evolution. In this work, we propose a fast protocol that achieves GHZ encoding with high accuracy. The evolution time Oโก(log 2 โก๐‘/๐‘) almost saturates the theoretical limit ฮฉโก(logโก๐‘/๐‘). Moreover, the final state is close to the ideal encoded one with high fidelity >1โ€“10 โˆ’3 , up to large system sizes ๐‘ โ‰ฒ 2000. The protocol only requires a few stages of time-independent Hamiltonian evolution; the key idea is to use the data qubit as control, and to use fast spin-squeezing dynamics generated by e.g., two-axis twisting.

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