Optoelectrical cooling of polar molecules to sub-millikelvin temperatures
arXiv:1511.09427 · doi:10.1103/PhysRevLett.116.063005
Abstract
We demonstrate direct cooling of gaseous formaldehyde (H2CO) to the microkelvin regime. Our approach, optoelectrical Sisyphus cooling, provides a simple dissipative cooling method applicable to electrically trapped dipolar molecules. By reducing the temperature by three orders of magnitude and increasing the phase-space density by a factor of ~ we generate an ensemble of molecules with a temperature of about 420μK, populating a single rotational state with more than 80% purity.
References in corpus (11)
- Many-Body Physics with Ultracold Gases
- A High Phase-Space-Density Gas of Polar Molecules
- Magneto-optical trapping of a diatomic molecule
- Using Molecules to Measure Nuclear Spin-Dependent Parity Violation
- Sisyphus Cooling of Electrically Trapped Polyatomic Molecules
- Sub-millikelvin dipolar molecules in a radio-frequency magneto-optical trap
- Electrostatic extraction of cold molecules from a cryogenic reservoir
- Realizing unconventional quantum magnetism with symmetric top molecules
- Opto-Electrical Cooling of Polar Molecules
- Rotational cooling of trapped polyatomic molecules
- Preparation of an ultra-cold sample of ammonia molecules for precision measurements
Cited by in corpus (99)
- Search for New Physics with Atoms and Molecules
- Cold molecules: Progress in Quantum Engineering of Chemistry and Quantum Matter
- Dipolar physics: A review of experiments with magnetic quantum gases
- Molecules cooled below the Doppler limit
- Quantum control of molecular rotation
- Sisyphus Laser Cooling of a Polyatomic Molecule
- New frontiers with quantum gases of polar molecules
- 3-D Magneto-Optical Trap of Yttrium Monoxide
- Magneto-Optical Trapping and Sub-Doppler Cooling of a Polyatomic Molecule
- Direct Laser Cooling of a Symmetric Top Molecule
- Sub-millikelvin dipolar molecules in a radio-frequency magneto-optical trap
- Ultracold molecules for quantum simulation: rotational coherences in CaF and RbCs
- Assembly of a rovibrational ground state molecule in an optical tweezer
- Polyatomic Molecules as Quantum Sensors for Fundamental Physics
- Magnetic trapping and coherent control of laser-cooled molecules
- Loss of ultracold RbCs molecules via optical excitation of long-lived two-body collision complexes
- Sub-Doppler Cooling and Compressed Trapping of YO Molecules at K Temperatures
- 1D Magneto-Optical Trap of Polyatomic Molecules
- Laser cooling of molecules
- Laser slowing of CaF molecules to near the capture velocity of a molecular MOT
- Strongly interacting ultracold polar molecules
- Laser cooled molecules
- Deep laser cooling and efficient magnetic compression of molecules
- Laser-coolable polyatomic molecules with heavy nuclei
- Molecular Asymmetry and Optical Cycling: Laser Cooling Asymmetric Top Molecules
- An intense, cold, velocity-controlled molecular beam by frequency-chirped laser slowing
- Self-bound dipolar droplets and supersolids in molecular Bose-Einstein condensates
- Molecular assembly of ground state cooled single atoms
- A cryofuge for cold-collision experiments with slow polar molecules
- Extending rotational coherence of interacting polar molecules in a spin-decoupled magic trap
- High-precision methanol spectroscopy with a widely tunable SI-traceable frequency-comb-based mid-infrared QCL
- Collisions Between Ultracold Molecules and Atoms in a Magnetic Trap
- Adimensional theory of shielding in ultracold collisions of dipolar rotors
- Trapping of molecular Oxygen together with Lithium atoms
- Quantum Control of Trapped Polyatomic Molecules for eEDM Searches
- Structures, Branching Ratios and Laser Cooling Scheme for 138BaF Molecule
- Determination of CaOH and CaOCH vibrational branching ratios for direct laser cooling and trapping
- Quantum control of molecules for fundamental physics
- Rotational friction and diffusion of quantum rotors
- Evidence for association of triatomic molecule in ultracold NaK and K mixture
- Coherent Bichromatic Force Deflection of Molecules
- Quantum Blackbody Thermometry
- Cold collision and high-resolution spectroscopy of buffer gas cooled BaF Molecule
- Optical cycling of AlF molecules
- Sideband cooling of molecules in optical traps
- Ultracold field-linked tetratomic molecules
- Tune-out and magic wavelengths for ground-state NaK molecules
- Optical Trapping of a Polyatomic Molecule in an -Type Parity Doublet State
- Radiation Pressure Force from Optical Cycling on a Polyatomic Molecule
- Principles and design of a Zeeman-Sisyphus decelerator for molecular beams
- Controlling Spin-flips of Molecules in an Electromagnetic Trap
- Cryogenic Buffer Gas beams of AlF, CaF, MgF, YbF, Al, Ca, Yb and NO -- a comparison
- Efficient conversion of closed-channel dominated Feshbach molecules of NaK to their absolute ground state
- Magneto-optical trapping of a heavy polyatomic molecule for precision measurement
- Molecular Collisions: from Near-cold to Ultra-cold
- Nondestructive Detection of Polar Molecules via Rydberg Atoms
- Cold collisions of heavy molecules with alkali-metal atoms in a magnetic field: Ab initio analysis and prospects for sympathetic cooling of SrOH by Li(S)
- Coherent optical creation of a single molecule
- Three-dimensional modeling magneto-optical trapping of MgF molecule with multilevel rate equations
- Enhancing dipolar interactions between molecules using state-dependent optical tweezer traps
- One dimensional magneto-optical compression of a cold CaF molecular beam
- Large molasses-like cooling forces for molecules using polychromatic optical fields: A theoretical description
- Blackbody thermalization and vibrational lifetimes of trapped polyatomic molecules
- State resolved investigation of Förster resonant energy transfer in collisions between polar molecules and Rydberg atoms
- Electric-field-controlled cold dipolar collisions between trapped CHF molecules
- Intensity-borrowing mechanisms pertinent to laser cooling of linear polyatomic molecules
- Single-shot Non-destructive Quantum Sensing for Gaseous Samples with Hundreds of Chiral Molecules
- Simulation of Cryogenic Buffer Gas Beams
- Characterizing the Zeeman slowing force for CaF molecules
- Microwave trap for atoms and molecules
- Interactions of benzene, naphthalene, and azulene with alkali-metal and alkaline-earth-metal atoms for ultracold studies
- High-resolution 'magic'-field spectroscopy on trapped polyatomic molecules
- A general Zeeman slower for type-II transitions and polar molecules
- Multivalent optical cycling centers in polyatomic molecules
- Sympathetic cooling and slowing of molecules with Rydberg atoms
- Fast, precise, and widely tunable frequency control of an optical parametric oscillator referenced to a frequency comb
- Type-II Zeeman slowing: Characterization and comparison to conventional radiative beam slowing schemes
- Simulating electric field interactions with polar molecules using spectroscopic databases
- Dynamics of a buffer-gas-loaded, deep optical trap for molecules
- The chemistry of AlF and CaF production in buffer gas sources
- Cold neutral atoms via charge exchange from excited state positronium: a proposal
- Slow molecular beams from a cryogenic buffer gas source
- Coherence of Symmetry-Protected Rotational Qubits in Cold Polyatomic Molecules
- Impact of overlapping resonances on magnetoassociation of cold molecules in tight traps
- Measurements of trap dynamics of cold OH molecules using resonance enhanced multiphoton ionization
- Laser Cooling with Adiabatic Transfer on a Raman Transition
- Cold CH radicals for laser cooling and trapping
- Studying fundamental physics using quantum enabled technologies with trapped molecular ions
- Long-range interactions of aromatic molecules with alkali-metal and alkaline-earth-metal atoms
- Precise Feshbach resonance spectroscopy using tight anharmonic traps
- Atom-Molecule Superradiance and Entanglement with Cavity-Mediated Three-Body Interactions
- Nuclear-Spin Dependent Parity Violation in Optically Trapped Polyatomic Molecules
- Laser Cooling Scheme for the Carbon Dimer (C)
- Rigorous quantum calculations for atom-molecule chemical reactions in electric fields: from single to multiple partial wave regimes
- Removal of high-voltage-induced surface charges by ultraviolet light
- Parity-Doublet Coherence Times in Optically Trapped Polyatomic Molecules
- High-sensitivity molecular spectroscopy of SrOH using magneto-optical trapping
- High-resolution spectroscopy on cold electrically trapped formaldehyde
- Cold interactions and chemical reactions of linear polyatomic anions with alkali-metal and alkaline-earth-metal atoms