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quant-ph2026

Holographic quantum codes with trapped ions

Alex Steiner, Gerard Anglès Munné, Robert Freund +9

Holography is a central concept at the intersection of gravity, condensed matter theory, and quantum information, linking the interior bulk of a system to its boundary. A model rea…

quant-ph2026

Experimental measurement and a physical interpretation of quantum shadow enumerators

Daniel Miller, Kyano Levi, Lukas Postler +18

Throughout its history, the theory of quantum error correction has heavily benefited from translating classical concepts into the quantum setting. In particular, classical notions…

quant-ph2025

Demonstration of two-dimensional connectivity for a scalable error-corrected ion-trap quantum processor architecture

Marco Valentini, Martin W. van Mourik, Friederike Butt +12

A major hurdle for building a large-scale quantum computer is increasing the number of qubits while maintaining connectivity between them. In trapped-ion devices, this connectivity…

quant-ph2025

Test and characterization of multilayer ion traps on fused silica

Matthias Dietl, Marco Valentini, Fabian Anmasser +7

Ion traps are a promising architecture to host a future quantum computer. Several challenges, such as signal-routing, power dissipation, and fabrication quality need to be overcome…

quant-ph2025

Controlling the spontaneous emission of trapped ions

Tommaso Faorlin, Benjamin Yadin, Yannick Weiser +7

We propose an experimental setup for manipulating the spontaneous emission of trapped ions, based on a spatial light modulator. Anticipated novelties include the potential to entan…

quant-ph2024

Constructing the spin-1 Haldane phase on a qudit quantum processor

C. L. Edmunds, E. Rico, I. Arrazola +4

Symmetry-protected topological phases have fundamentally changed our understanding of quantum matter. An archetypal example of such a quantum phase of matter is the Haldane phase,…