Science · 2019 · 65 citations · 35 references
EngineeringMicroscopyChemistryUltracold AtomSingle MoleculeMolecular PhysicsMolecular SpectroscopyQuantum SciencePhysicsAtomic PhysicsSubnanoscale SizeRydberg Macrodimers-bound StatesQuantum ChemistryBose-einstein CondensationSingle-molecule DetectionRydberg Interaction PotentialsNatural SciencesSpectroscopyQuantum BiologyRydberg Macrodimers
The subnanoscale size of typical diatomic molecules hinders direct optical access to their constituents. Rydberg macrodimers-bound states of two highly excited Rydberg atoms-feature interatomic distances easily exceeding optical wavelengths. We report the direct microscopic observation and detailed characterization of such molecules in a gas of ultracold rubidium atoms in an optical lattice. The bond length of about 0.7 micrometers, comparable to the size of small bacteria, matches the diagonal distance of the lattice. By exciting pairs in the initial two-dimensional atom array, we resolved more than 50 vibrational resonances. Using our spatially resolved detection, we observed the macrodimers by correlated atom loss and demonstrated control of the molecular alignment by the choice of the vibrational state. Our results allow for rigorous testing of Rydberg interaction potentials and highlight the potential of quantum gas microscopy for molecular physics.
35
Many-body physics with ultracold gases
Immanuel Bloch, Jean Dalibard, W. Zwerger · Reviews of Modern Physics · 2008 · 7.9K citations · Full text
Quantum information with Rydberg atoms
M. Saffman, Thad Walker, Klaus Mølmer · Reviews of Modern Physics · 2010 · 2.7K citations · Full text
Probing many-body dynamics on a 51-atom quantum simulator
Hannes Bernien, Sylvain Schwartz, Alexander Keesling et al. · Nature · 2017 · 2.4K citations · Full text
Single-atom-resolved fluorescence imaging of an atomic Mott insulator
Jacob Sherson, Christof Weitenberg, Manuel Endres et al. · Nature · 2010 · 1.3K citations · Full text