Formation of ultracold triatomic molecules by electric microwave association
arXiv:2502.06590 · doi:10.1103/PhysRevResearch.7.023187
Abstract
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 microwave field, which induces the association of an ultracold atom colliding with an ultracold diatomic molecule. This model is exemplified using K atoms and NaK molecules, both in their ground states, a scenario of experimental relevance. The model assumes that the dynamics of the association are dominated by the long-range van der Waals interaction between K and NaK. The electric microwave association mechanism relies on the intrinsic electric dipole moment of NaK, which drives transitions between its lowest rotational levels ( =0 and =1). The energies of the uppermost triatomic energy levels are computed by numerically solving coupled Schrödinger equations using the Mapped Fourier Grid Hamiltonian method. Measurable association rates are derived within the framework of a perturbative approach. This method of electric microwave association provides an alternative to atom-molecule association via magnetic Feshbach resonances for forming ultracold, deeply bound triatomic molecules, and is applicable to a wide range of polar diatomic molecules.
References in corpus (15)
- A High Phase-Space-Density Gas of Polar Molecules
- Evaporation of microwave-shielded polar molecules to quantum degeneracy
- Observation of Bose-Einstein Condensation of Dipolar Molecules
- Control of reactive collisions by quantum interference
- Collisionally Stable Gas of Bosonic Dipolar Ground State Molecules
- Electric field suppression of ultracold confined chemical rates
- Field-linked resonances of polar molecules
- Van der Waals coefficients for systems with ultracold polar alkali-metal molecules
- Evidence for association of triatomic molecule in ultracold NaK and K mixture
- Magnetic Feshbach resonances in collisions of NaK with K
- Spectrum of Feshbach resonances in NaLi Na collisions
- Observation of photoassociation resonances in ultracold atom-molecule collisions
- Triatomic Photoassociation in an Ultracold Atom-Molecule Collision
- A pathway to ultracold bosonic ground state molecules
- Microwave photo-association of fine-structure-induced Rydberg macro-dimer molecules of cesium