collaborators

5 papers

physics.atom-ph2026

Accurate Modeling of Rydberg Atoms and Their Interactions: Theory and Implementation in PairInteraction

Johannes Mögerle, Frederic Hummel, Alicia Keil +8

Rydberg atoms provide a powerful platform for exploring strongly interacting quantum systems, both in free space and in structured electromagnetic environments, with growing applic…

quant-ph2026

Controlling emergent dynamical behavior via phase-engineered strong symmetries

Marc Nairn, Beatriz Olmos, Parvinder Solanki

Symmetry constraints provide a powerful means to control the dynamics of open quantum systems. However, the set of accessible control parameters is often limited. Here, we show tha…

quant-ph2026

Robust topological quantum state transfer with long-range interactions in Rydberg arrays

Siri Raupach, Beatriz Olmos, Mathias B. M. Svendsen

We develop a theoretical framework for fast, robust and high-fidelity topological quantum state transfer in one-dimensional systems with long-range couplings, motivated by chains o…

cond-mat.quant-gas2025

Spin self-organization in an optical cavity facilitated by inhomogeneous broadening

Marc Nairn, Luigi Giannelli, Giovanna Morigi +3

We study the onset of collective spin-self-organization in a thermal ensemble of driven two-level atoms confined in an optical cavity. The atoms spontaneously form a spin-pattern a…

quant-ph2025

Topological phases in two-dimensional Rydberg lattices

Mathias B. M. Svendsen, Beatriz Olmos

Rydberg lattice gases are at the forefront of quantum simulation platforms due to their inherent strong dipole-dipole interactions, long life-times and high degree of control curre…