activity
20242026
collaborators

5 papers

physics.atom-ph2026

Direct observation of the optical Magnus effect with a trapped ion

Philip Leindecker, Louis P. H. Gallagher, Edgar Brucke +7

We directly observe and spatially map an optical analog of the Magnus effect, where intrinsic spin-orbit-like coupling of light generates a spin-dependent transverse displacement o…

quant-ph2025

Scaling roadmap for modular trapped-ion QEC and lattice-surgery teleportation

César Benito, Alfredo Ricci Vasquez, Jonathan Home +4

We present a footprint study for the scaling of modular quantum error correction (QEC) protocols designed for triangular color codes, including a lattice-surgery-based logical tele…

physics.atom-ph2025

Quantum control of a single molecular ion

David Holzapfel, Fabian Schmid, Nick Schwegler +5

Science is founded on the benchmarking of theoretical models against experimental measurements, with the challenge that for all but the simplest systems, the calculations required…

quant-ph2024

A 3-dimensional scanning trapped-ion probe

Tobias Sägesser, Shreyans Jain, Pavel Hrmo +6

Single-atom quantum sensors offer high spatial resolution and high sensitivity to electric and magnetic fields. Among them, trapped ions offer exceptional performance in sensing el…

quant-ph2024

Multi-zone trapped-ion qubit control in an integrated photonics QCCD device

Carmelo Mordini, Alfredo Ricci Vasquez, Yuto Motohashi +6

Multiplexed operations and extended coherent control over multiple trapping sites are fundamental requirements for a trapped-ion processor in a large scale architecture. Here we de…