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quant-ph2025

Fast Native Three-Qubit Gates and Fault-Tolerant Quantum Error Correction with Trapped Rydberg Ions

Katrin Bolsmann, Thiago L. M. Guedes, Weibin Li +3

Trapped ions as one of the most promising quantum-information-processing platforms, yet conventional entangling gates mediated by collective motion remain slow and difficult to sca…

quant-ph2025

Probing electronic state-dependent conformational changes in a trapped Rydberg ion Wigner crystal

Marion Mallweger, Natalia Kuk, Vinay Shankar +6

State-dependent conformational changes play a central role in molecular dynamics, yet they are often difficult to observe or simulate due to their complexity and ultrafast nature.…

quant-ph2025

Rydberg atom arrays as quantum simulators for molecular dynamics

Simon Euchner, Igor Lesanovsky

Rydberg atoms held in optical tweezer arrays combine vibrational and electronic degrees of freedom which can be coupled and manipulated at a microscopic level. This opens opportuni…

physics.atom-ph2025

Impact of micromotion and field-axis misalignment on the excitation of Rydberg states of ions in a Paul trap

Wilson S. Martins, Joseph W. P. Wilkinson, Markus Hennrich +1

Trapped ions are among the most advanced platforms for quantum simulation and computation. Their capabilities can be further augmented by making use of electronically highly excite…

quant-ph2025

Spectral Signatures of Vibronic Coupling in Trapped Cold Ionic Rydberg Systems

Joseph W. P. Wilkinson, Weibin Li, Igor Lesanovsky

Atoms and ions confined with electric and optical fields form the basis of many current quantum simulation and computing platforms. When excited to high-lying Rydberg states, long-…

quant-ph2025

Hybrid sub- and superradiant states in emitter arrays with quantized motion

Beatriz Olmos, Igor Lesanovsky

Ensembles of dipolar emitters which couple collectively to the radiation field display sub- and superradiance. These terms refer to a reduction or an enhancement of photon emission…