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Prospects for Simulating a Qudit Based Model of (1+1)d Scalar QED

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arxiv 2104.10136 v2 pith:Q7FMGJY3 submitted 2021-04-20 quant-ph hep-lat

classification quant-phhep-lat
keywords encodingquantumqutritscalararbitrarycomputersconstructioncost
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abstract

We present a gauge invariant digitization of $(1+1)$d scalar quantum electrodynamics for an arbitrary spin truncation for qudit-based quantum computers. We provide a construction of the Trotter operator in terms of a universal qudit-gate set. The cost savings of using a qutrit based spin-1 encoding versus a qubit encoding are illustrated. We show that a simple initial state could be simulated on current qutrit based hardware using noisy simulations for two different native gate set.

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    Demonstrates a two-mode SRF cavity platform with 20.6 ms and 15.6 ms lifetimes, error-resilient sideband control, Fock state preparation up to n=20 with >95% post-selected fidelity, and a virtual Raman beamsplitter wi...

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