Hyperfine-to-rotational energy transfer in ultracold atom-molecule collisions
arXiv:2407.08891 · doi:10.1038/s41557-025-01778-z
Abstract
Energy transfer between different mechanical degrees of freedom in atom-molecule collisions has been widely studied and largely understood. However, systems involving spins remain less explored, especially with a state-to-state precision. Here, we directly observed the energy transfer from atomic hyperfine to molecular rotation in the Rb () + KRb (in the rovibronic ground state ) Rb () + KRb () exothermic collision. We probed the quantum states of the collision products using resonance-enhanced multi-photon ionization followed by time-of-flight mass spectrometry. We also carried out state-of-the-art quantum scattering calculations, which rigorously take into account the coupling between the spin and rotational degrees of freedom at short range, and assume that the KRb monomer can be treated as a rigid rotor moving on a single potential energy surface. The calculated product rotational state distribution deviates from the observations even after extensive tuning of the atom-molecule potential energy surface, suggesting that vibrational degrees of freedom and conical intersections play an important part in ultracold Rb + KRb collisions. Additionally, our ab initio calculations indicate that spin-rotation coupling is dramatically enhanced near a conical intersection, which is energetically accessible at short range. The observations confirm that spin is coupled to mechanical rotation at short range and establish a benchmark for future theoretical studies.
References in corpus (25)
- A High Phase-Space-Density Gas of Polar Molecules
- Direct observation of bimolecular reactions of ultracold KRb molecules
- Statistical Aspects of Ultracold Resonant Scattering
- Direct probe of anisotropy in atom-molecule collisions via quantum scattering resonances
- Collisional Cooling of Ultracold Molecules
- Ultracold Rb-OH collisions and prospects for sympathetic cooling
- Loss of ultracold RbCs molecules via optical excitation of long-lived two-body collision complexes
- Imaging the onset of the resonance regime in low-energy NO-He collisions
- Precision test of statistical dynamics with state-to-state ultracold chemistry
- Collisions of ultracold molecules in bright and dark optical dipole traps
- Probing photoinduced two-body loss of ultracold non-reactive bosonic NaRb and NaK molecules
- A quasiclassical method for calculating the density of states of ultracold collision complexes
- Ultracold Sticky Collisions: Theoretical and Experimental Status
- Collisions Between Ultracold Molecules and Atoms in a Magnetic Trap
- A Feshbach resonance in collisions between ultracold ground state molecules
- Hyperfine structure of alkali-metal diatomic molecules
- Magnetic Feshbach resonances in collisions of NaK with K
- Atom-molecule collisions, spin relaxation, and sympathetic cooling in an ultracold spin-polarized Rb()-SrF mixture
- Steering ultracold reactions through long-lived transient intermediates
- Universal probability distributions of scattering observables in ultracold molecular collisions
- Collisional losses of ultracold molecules due to intermediate complex formation
- Probing ultracold chemistry using ion spectrometry
- A fundamental limit to the efficiency of spin-exchange optical pumping of 3He nuclei
- Signatures of Non-universal Quantum Dynamics of Ultracold Chemical Reactions of Polar Alkali-dimer Molecules with Alkali-metal Atoms: Li(S) +NaLi() Na(S) + Li()
- Ultracold molecular collisions in magnetic fields: Efficient incorporation of hyperfine structure in the total rotational angular momentum representation
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- Magneto-Optical Trapping of a Metal Hydride Molecule
- Rigorous quantum calculations for atom-molecule chemical reactions in electric fields: from single to multiple partial wave regimes
- CaF+CaF interactions in the ground and excited electronic states: implications for collisional losses
- Semiclassical Spin Exchange via Temperature-Dependent Transition States
- Optical formation of ultracold NaK ground state molecules
- A quadratic-scaling algorithm with guaranteed convergence for quantum coupled-channel calculations
- Charge Exchange Dynamics in Cold Collisions of CaH and K