Atom Interferometry in a Warm Vapor
arXiv:1610.02451 · doi:10.1103/PhysRevLett.118.163601
Abstract
We demonstrate matterwave interference in a warm vapor of rubidium atoms. Established approaches to light pulse atom interferometry rely on laser cooling to concentrate a large ensemble of atoms into a velocity class resonant with the atom optical light pulse. In our experiment, we show that clear interference signals may be obtained without laser cooling. This effect relies on the Doppler selectivity of the atom interferometer resonance. This interferometer may be configured to measure accelerations, and we demonstrate that multiple interferometers may be operated simultaneously by addressing multiple velocity classes.
References in corpus (9)
- Precision Measurement of the Newtonian Gravitational Constant Using Cold Atoms
- Interferometry with Bose-Einstein Condensates in Microgravity
- Testing General Relativity with Atom Interferometry
- A New Method for Gravitational Wave Detection with Atomic Sensors
- Quantum Test of the Universality of Free Fall
- Testing Gravity with Cold-Atom Interferometers
- Hybridizing matter-wave and classical accelerometers
- Investigation of Anti-Relaxation Coatings for Alkali-Metal Vapor Cells Using Surface Science Techniques
- Nonlinear magneto-optical rotation, Zeeman and hyperfine relaxation of potassium atoms in a paraffin-coated cell
Cited by in corpus (15)
- High-accuracy inertial measurements with cold-atom sensors
- Multiaxis atom interferometry with a single diode laser and a pyramidal magneto-optical trap
- High-Performance Silicon Photonic Single-Sideband Modulators for Cold Atom Interferometry
- Observation of vector and tensor light shifts in 87Rb using near-resonant, stimulated Raman spectroscopy
- Dilaton-induced open quantum dynamics
- Scattering of an alkali atomic beam on anti-spin-relaxation-coatings
- Reduction of helium permeation in microfabricated cells using aluminosilicate glass substrates and AlO coatings
- Quantum-Enhanced Velocimetry with Doppler-Broadened Atomic Vapor
- Recoil-sensitive lithium interferometer without a subrecoil sample
- Cold Beam Optical Clock with Multifrequency Spectroscopy
- Monolithic atom interferometry
- Synchronization of strongly interacting alkali-metal spins
- Spectrally entangled biphoton state of cascade emissions from a Doppler-broadened atomic ensemble
- A Gauge Field Theory of Coherent Matter Waves
- Phase modulation detection of a strontium atom interferometer gyroscope