Matter wave lensing to picokelvin temperatures
arXiv:1407.6995 · doi:10.1103/PhysRevLett.114.143004
Abstract
Using a matter wave lens and a long time-of-flight, we cool an ensemble of Rb-87 atoms in two dimensions to an effective temperature of less than ~pK. A short pulse of red-detuned light generates an optical dipole force that collimates the ensemble. We also report a three-dimensional magnetic lens that substantially reduces the chemical potential of evaporatively cooled ensembles with high atom number. By observing such low temperatures, we set limits on proposed modifications to quantum mechanics in the macroscopic regime. These cooling techniques yield bright, collimated sources for precision atom interferometry.
5 pagers, 5 figures
References in corpus (10)
- Atom Interferometers
- Interferometry with Bose-Einstein Condensates in Microgravity
- A New Method for Gravitational Wave Detection with Atomic Sensors
- Atom Interferometry tests of the isotropy of post-Newtonian gravity
- Macroscopicity of Mechanical Quantum Superposition States
- General Relativistic Effects in Atom Interferometry
- An Atomic Gravitational Wave Interferometric Sensor in Low Earth Orbit (AGIS-LEO)
- Atom interferometer as a selective sensor of rotation or gravity
- Focusing a fountain of neutral cesium atoms with an electrostatic lens triplet
- Experimental single-impulse magnetic focusing of launched cold atoms
Cited by in corpus (16)
- Present status and future challenges of non-interferometric tests of collapse models
- Testing the universality of free fall with rubidium and ytterbium in a very large baseline atom interferometer
- A high-flux BEC source for mobile atom interferometers
- Testing collapse models with levitated nanoparticles: the detection challenge
- Gravity Field Mapping Using Laser Coupled Quantum Accelerometers in Space
- Testing Continuous Spontaneous Localization with Fermi liquids
- Talbot-enhanced, maximum-visibility imaging of condensate interference
- Optically guided atom interferometer tuned to magic wavelength
- The Emergency of Pico-Kelvin Physics
- Technologies for the ELGAR large scale atom interferometer array
- A simple superconductor quantum interference device for testing gravity
- Dark-state sideband cooling in an atomic ensemble
- Current tests of collapse models: How far can we push the limits of quantum mechanics?
- Bose-Einstein condensates in microgravity and fundamental tests of gravity
- Emergence of outcomes in quantum mechanics
- Probing the Quantum Nature of Gravity in the Microgravity of Space