Quantum computation and quantum simulation with ultracold molecules
Ultracold molecules confined in optical lattices or tweezer traps can be used to process
quantum information and simulate the behaviour of many-body quantum systems. Molecules …
quantum information and simulate the behaviour of many-body quantum systems. Molecules …
Quantum mixtures of ultracold gases of neutral atoms
After decades of improvements in cooling techniques of several atomic species and in
finding methods for the achievement of stable quantum mixtures, the field is now ready for …
finding methods for the achievement of stable quantum mixtures, the field is now ready for …
Observation of Bose–Einstein condensation of dipolar molecules
Ensembles of particles governed by quantum mechanical laws exhibit intriguing emergent
behaviour. Atomic quantum gases,, liquid helium, and electrons in quantum materials,–all …
behaviour. Atomic quantum gases,, liquid helium, and electrons in quantum materials,–all …
Ultracold chemistry as a testbed for few-body physics
Ultracold atoms, molecules and ions provide a unique playground to explore chemistry at
ultracold temperatures. In this Review, we discuss what makes these systems particularly …
ultracold temperatures. In this Review, we discuss what makes these systems particularly …
Controlling few-body reaction pathways using a Feshbach resonance
Gaining control over chemical reactions at the quantum level is a central goal of cold and
ultracold chemistry. Here we demonstrate a method for coherently steering the reaction flux …
ultracold chemistry. Here we demonstrate a method for coherently steering the reaction flux …
Controlling collisional loss and scattering lengths of ultracold dipolar molecules with static electric fields
Trapped samples of ultracold molecules are often short-lived because close collisions
between them result in trap loss. We investigate the use of shielding with static electric fields …
between them result in trap loss. We investigate the use of shielding with static electric fields …
Three-Body Recombination of Ultracold Microwave-Shielded Polar Molecules
I Stevenson, S Singh, A Elkamshishy, N Bigagli… - ar** of YO molecules offer new
opportunities to study collisional dynamics in the quantum regime. Confined in a crossed …
opportunities to study collisional dynamics in the quantum regime. Confined in a crossed …
Controlling collisional loss and scattering lengths of ultracold dipolar molecules with static electric fields
Trapped samples of ultracold molecules are often short-lived, because close collisions
between them result in trap loss. We investigate the use of shielding with static electric fields …
between them result in trap loss. We investigate the use of shielding with static electric fields …