The prospects of sympathetic cooling of NH molecules with Li atoms
arXiv:1009.5505 · doi:10.1140/epjd/e2011-20025-4
Abstract
We calculate the quartet potential energy surface for Li+NH and use it to calculate elastic and spin-relaxation cross sections for collisions in magnetically trappable spin-stretched states. The potential is strongly anisotropic but spin-relaxation collisions are still suppressed by centrifugal barriers when both species are in spin-stretched states. In the ultracold regime, both the elastic and inelastic cross sections fluctuate dramatically as the potential is varied because of Feshbach resonances. The potential-dependence is considerably reduced at higher energies. The major effect of using an unconverged basis set in the scattering calculations is to shift the resonances without changing their general behaviour. We have calculated the ratio of elastic and spin-relaxation cross sections, as a function of collision energy and magnetic field, for a variety of potential energy surfaces. Most of the surfaces produce ratios that are favorable for sympathetic cooling, at temperatures below about 20 mK.
Version as accepted by Eur. J. Phys. D for publication in Special Issue on Cold Quantum Matter, 2011
References in corpus (14)
- A High Phase-Space-Density Gas of Polar Molecules
- Quo vadis, cold molecules? - Editorial review
- Quantum Gas of Deeply Bound Ground State Molecules
- Ultracold Molecules in the Ro-Vibrational Triplet Ground State
- Magnetic trapping and Zeeman relaxation of imidogen (NH X-triplet-Sigma)
- Molecule formation in ultracold atomic gases
- Ultracold Rb-OH collisions and prospects for sympathetic cooling
- Ultracold atom-molecule collisions and bound states in magnetic fields: tuning zero-energy Feshbach resonances in He-NH (3Sigma-)
- Electrostatic trapping of metastable NH molecules
- Mechanism of Collisional Spin Relaxation in Triplet-Sigma Molecules
- Magnetic trapping of atomic nitrogen (14^N) and cotrapping of NH (X-triplet-Sigma-)
- Cold and ultracold NH--NH collisions in magnetic fields
- Cold collisions of N atoms and NH molecules in magnetic fields
- Cold and ultracold NH--NH collisions: The field-free case
Cited by in corpus (30)
- Manipulation of Molecules with Electromagnetic Fields
- Microwave shielding of ultracold polar molecules
- Magnetically-Trapped Molecules Efficiently Loaded from a Molecular MOT
- Bayesian machine learning for quantum molecular dynamics
- Laser cooled molecules
- Quantum reactive scattering of ultracold NH() radicals in a magnetic trap
- Collisions Between Ultracold Molecules and Atoms in a Magnetic Trap
- Modeling sympathetic cooling of molecules by ultracold atoms
- Magnetic Feshbach resonances in collisions of NaK with K
- Cold atomic and molecular collisions: approaching the universal loss regime
- MARVEL analysis of the measured high-resolution spectra of NH
- The approach to chaos in ultracold atomic and molecular physics: statistics of near-threshold bound states for Li+CaH and Li+CaF
- Universal probability distributions of scattering observables in ultracold molecular collisions
- First-principle interaction potentials for metastable He(S) and Ne(P) with closed-shell molecules. Application to Penning-Ionizing systems
- Molecular Collisions: from Near-cold to Ultra-cold
- Multistage Zeeman deceleration of NH radicals
- Spectrum of Feshbach resonances in NaLi Na collisions
- Ab Initio Study of Chemical Reactions of Cold SrF and CaF Molecules with Alkali-Metal and Alkaline-Earth-Metal Atoms
- Quantum chaos in ultracold collisions between Yb(S) and Yb(P)
- Total angular momentum representation for atom-molecule collisions in electric fields
- Ultracold hydrogen atoms: a versatile coolant to produce ultracold molecules
- Low-energy collisions between carbon atoms and oxygen molecules in a magnetic trap
- Observation of the P-wave Shape Resonance
- Sympathetic cooling of fluorine atoms with ultracold atomic hydrogen
- Elastic and inelastic collisions of molecules in a magnetic field
- Multichannel Quantum Defect Theory for cold molecular collisions with a strongly anisotropic potential energy surface
- Magnetic Feshbach resonances in collisions of non-magnetic closed-shell molecules
- A proposal for sympathetically cooling neutral molecules using cold ions
- Effects of Conical Intersections on Hyperfine Quenching of Hydroxyl OH in collision with an ultracold Sr atom
- Simultaneous Zeeman deceleration of polyatomic free radical with lithium atoms