collaborators

6 papers

cond-mat.quant-gas2026

Self-limiting electrostriction of a single ion in an ultracold polar gas: From mesoscopic ions to crystalline molecular rings

Ruiren Shi, Saajid Chowdhury, Leon Karpa +1

We investigate the self-assembly of polar molecules around a single ion immersed in an ultracold, dilute two-dimensional molecular gas. The ion aligns and attracts the molecules th…

physics.atom-ph2026

Electric-field control of atom-molecule Feshbach resonances

Mara Meyer zum Alten Borgloh, Jule Heier, Fritz von Gierke +4

Ultracold molecules provide opportunities for exploring quantum matter, chemical dynamics and information processing thanks to their rich interactions, which can be controlled by e…

cond-mat.quant-gas2026

Two-photon-assisted collisions in ultracold gases of polar molecules II : Optical shielding of ultracold polar molecular collisions

Gohar Hovhannesyan, Charbel Karam, Romain Vexiau +4

We theoretically investigate the collisions between ultracold polar molecules in the presence of two lasers ensuring a Raman resonant transition on individual molecules to suppress…

cond-mat.quant-gas2025

Optical formation of ultracold NaK ground state molecules

Baraa Shammout, Leon Karpa, Silke Ospelkaus +2

We study the rovibronic transitions in NaK between its electronic ground state and its second excited state , to identify possible pathways for the creation of u…

physics.atom-ph2025

Ultracold Interactions between Ions and Polar Molecules

Leon Karpa, Olivier Dulieu

We propose a platform for observing and controlling the interactions between atomic ions and a quantum gas of polar molecules in the ultracold regime. This approach is based on the…

physics.atom-ph2025

Formation of ultracold triatomic molecules by electric microwave association

Baraa Shammout, Leon Karpa, Silke Ospelkaus +2

A theoretical model is proposed for the formation of ultracold ground-state triatomic molecules in weakly bound energy levels. The process is driven by the electric component of a…