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Real-Time Observation of Aharonov-Bohm Interference in a $\mathbb{Z}_2$ Lattice Gauge Theory on a Hybrid Qubit-Oscillator Quantum Computer

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arxiv 2507.19588 v1 pith:NNEK3ZWH submitted 2025-07-25 quant-ph

classification quant-ph
keywords gaugefieldsquantumlatticelgtsmathbbreal-timeaharonov-bohm
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

Quantum simulations of lattice gauge theories (LGTs) with both dynamical matter and gauge fields provide a promising approach to studying strongly coupled problems beyond classical computational reach. Yet, implementing gauge-invariant encodings and real-time evolution remains experimentally challenging. Here, we demonstrate a resource-efficient encoding of a $\mathbb{Z}_2$ LGT using a hybrid qubit-oscillator trapped-ion quantum device, where qubits represent gauge fields and vibrational modes naturally encode bosonic matter fields. This architecture utilises synthetic dimensions to construct higher-dimensional lattice geometries and combines digital and analogue techniques to prepare initial states, realise gauge-invariant real-time evolution, and measure the relevant observables. We experimentally probe dynamics obeying Gauss's law in a $\mathbb{Z}_2$ link and extend this to a loop geometry, marking the first steps towards higher-dimensional LGTs. In this quasi-2D setup, we observe Aharonov-Bohm interference for the first time with dynamical gauge fields encoding magnetic flux, demonstrating the interplay between charge and flux. Our results chart a promising path for scalable quantum simulations of bosonic gauge theories and outline a roadmap for realising exotic LGTs in higher dimensions.

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Cited by 4 Pith papers

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  1. Role of flavor degrees of freedom in quantum simulations of disorder-free localization

    quant-ph 2026-07 conditional novelty 6.0 of 10

    In a flavor-extended Z2 lattice gauge theory, n=2 binary bond disorder yields only a long-lived nonergodic transient, whereas n=4 and n=8 multilevel disorder produce consistent many-body localization signatures; local...

  2. Benchmarking trigonometric continuous-variable gate primitives with trapped ions

    quant-ph 2026-07 conditional novelty 6.0 of 10

    Cosine gates exp(-iθ cos(c x̂)) in one- and two-mode versions were implemented on trapped-ion motional modes and benchmarked against noise-inclusive simulations via Fock-space transition probabilities.

  3. Symmetry-protected topology and deconfined solitons in a multi-link $\mathbb{Z}_2$ gauge theory

    cond-mat.str-el 2026-03 conditional novelty 6.0 of 10

    In a multi-link Z2 lattice gauge theory with three bonds per site pair, gauge fluxes order in a Peierls-like pattern that coexists with topological order, and doping produces deconfined half-charge solitons.

  4. Rapid all-optical loading of trapped ions using a miniaturised atom source

    physics.atom-ph 2025-12 conditional novelty 6.0 of 10

    A laser-heated, collimated micro-oven loads 40Ca+ ions into a Paul trap at up to 24(3) ions/s with less than 85 mW of optical power.

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