We consider the matterwave interferometric measurement of atomic velocities, which forms a building block for all matterwave inertial measurements. A theoretical analysis, addressing both the laboratory and atomic frames and accounting for residual Doppler sensitivity in the beamsplitter and recombiner pulses, is followed by an experimental demonstration, with measurements of the velocity distribution within a 20 μK cloud of rubidium atoms. Our experiments use Raman transitions between the long-lived ground hyperfine states, and allow quadrature measurements that yield the full complex interferometer signal and hence discriminate between positive and negative velocities. The technique is most suitable for measurement of colder samples
Ultracold samples of laser-cooled atoms are quantum systems over which modern atomic physicists can ...
We demonstrate light-pulse atom interferometry with large-momentum-transfer atom optics based on sti...
Atom interferometry is proving to be one of the most precise technique in gravimetry and gravity gra...
We consider the matterwave interferometric measurement of atomic velocities, which forms a building ...
We consider the matterwave interferometric measurement of atomic velocities, which forms a building ...
We present an elegant application of matter-wave interferometry to the velocimetry of cold atoms whe...
Interferometric measurement of an atom’s velocity allows, by tailoring the impulse imparted by the m...
We present an elegant application of matterwave interferometry to the velocimetry of cold atoms wher...
We present an elegant application of matterwave interferometry to the velocimetry of cold atoms wher...
We report the 1-D cooling of 85Rb atoms using a velocity-dependent optical force based upon Ramsey m...
We report the 1D cooling of Rb85 atoms using a velocity-dependent optical force based upon Ramsey ma...
Paper relates to the measurement of the velocity distribution of atoms within a laser-cooled sample ...
Paper relates to the measurement of the velocity distribution of atoms within a laser-cooled sample ...
Paper relates to the measurement of the velocity distribution of atoms within a laser-cooled sample ...
Paper relates to the measurement of the velocity distribution of atoms within a laser-cooled sample ...
Ultracold samples of laser-cooled atoms are quantum systems over which modern atomic physicists can ...
We demonstrate light-pulse atom interferometry with large-momentum-transfer atom optics based on sti...
Atom interferometry is proving to be one of the most precise technique in gravimetry and gravity gra...
We consider the matterwave interferometric measurement of atomic velocities, which forms a building ...
We consider the matterwave interferometric measurement of atomic velocities, which forms a building ...
We present an elegant application of matter-wave interferometry to the velocimetry of cold atoms whe...
Interferometric measurement of an atom’s velocity allows, by tailoring the impulse imparted by the m...
We present an elegant application of matterwave interferometry to the velocimetry of cold atoms wher...
We present an elegant application of matterwave interferometry to the velocimetry of cold atoms wher...
We report the 1-D cooling of 85Rb atoms using a velocity-dependent optical force based upon Ramsey m...
We report the 1D cooling of Rb85 atoms using a velocity-dependent optical force based upon Ramsey ma...
Paper relates to the measurement of the velocity distribution of atoms within a laser-cooled sample ...
Paper relates to the measurement of the velocity distribution of atoms within a laser-cooled sample ...
Paper relates to the measurement of the velocity distribution of atoms within a laser-cooled sample ...
Paper relates to the measurement of the velocity distribution of atoms within a laser-cooled sample ...
Ultracold samples of laser-cooled atoms are quantum systems over which modern atomic physicists can ...
We demonstrate light-pulse atom interferometry with large-momentum-transfer atom optics based on sti...
Atom interferometry is proving to be one of the most precise technique in gravimetry and gravity gra...