We demonstrate an interferometric scattering technique that allows highly precise measurements of s-wave scattering phase shifts. We collide two clouds of cesium atoms in a juggling fountain clock. The atoms in one cloud are prepared in a coherent superposition of the two clock states and the atoms in the other cloud in an F,mF state. After the two clouds collide, we detect the scattered part of the clock atom's wavefunction for which the phase of the clock coherence is shifted by the difference of the s-wave phase shifts. In this way, we unambiguously observe the differences of scattering phase shifts. These phase shifts are independent of the atomic density to lowest order, enabling measurements of scattering phase shifts with clock accur...
International audienceA rotating interferometer with paths that enclose a physical area exhibits a p...
We study the measurement of the positions of atoms as a means of estimating the relative phase betwe...
Strontium optical lattice clocks at JILA recently demonstrated record-high accuracy and stability. T...
We demonstrate an interferometric scattering technique that allows highly precise measurements of s-...
The collision of two ultra-cold atoms results in a quantum-mechanical superposition of two outcomes:...
We use an atomic fountain clock to measure quantum scattering phase shifts precisely through a serie...
We use an atomic fountain clock to measure quantum scattering phase shifts precisely through a serie...
We demonstrate a Rb fountain clock which has a small cold collision shift that is cancelled by detun...
We present experiments measuring an interaction-induced phase shift of Rydberg atoms at Stark-tuned ...
Light-pulse atom interferometers have been used as quantum inertial sensors and for precision tests ...
We study the diffraction phase of different orders via the Dyson expansion series, for ultracold ato...
International audienceWe have measured electron spin resonance line shifts due to collisions in atom...
The sensitivity of an atomic interferometer increases when the phase evolution of its quantum superp...
4 pages, 3 figures, 2 tablesWe present here a new method based on a transfer of population by adiaba...
The sensitivity of an atomic interferometer increases when the phase evolution of its quantum superp...
International audienceA rotating interferometer with paths that enclose a physical area exhibits a p...
We study the measurement of the positions of atoms as a means of estimating the relative phase betwe...
Strontium optical lattice clocks at JILA recently demonstrated record-high accuracy and stability. T...
We demonstrate an interferometric scattering technique that allows highly precise measurements of s-...
The collision of two ultra-cold atoms results in a quantum-mechanical superposition of two outcomes:...
We use an atomic fountain clock to measure quantum scattering phase shifts precisely through a serie...
We use an atomic fountain clock to measure quantum scattering phase shifts precisely through a serie...
We demonstrate a Rb fountain clock which has a small cold collision shift that is cancelled by detun...
We present experiments measuring an interaction-induced phase shift of Rydberg atoms at Stark-tuned ...
Light-pulse atom interferometers have been used as quantum inertial sensors and for precision tests ...
We study the diffraction phase of different orders via the Dyson expansion series, for ultracold ato...
International audienceWe have measured electron spin resonance line shifts due to collisions in atom...
The sensitivity of an atomic interferometer increases when the phase evolution of its quantum superp...
4 pages, 3 figures, 2 tablesWe present here a new method based on a transfer of population by adiaba...
The sensitivity of an atomic interferometer increases when the phase evolution of its quantum superp...
International audienceA rotating interferometer with paths that enclose a physical area exhibits a p...
We study the measurement of the positions of atoms as a means of estimating the relative phase betwe...
Strontium optical lattice clocks at JILA recently demonstrated record-high accuracy and stability. T...