The sensitivity of an atomic interferometer increases when the phase evolution of its quantum superposition state is measured over a longer interrogation interval. In practice, a limit is set by the measurement process, which returns not the phase but its projection in terms of population difference on two energetic levels. The phase interval over which the relation can be inverted is thus limited to the interval [-π/2,π/2]; going beyond it introduces an ambiguity in the readout, hence a sensitivity loss. Here, we extend the unambiguous interval to probe the phase evolution of an atomic ensemble using coherence-preserving measurements and phase corrections, and demonstrate the phase lock of the clock oscillator to an atomic superposition st...
We have developed a new method of pulsed interrogation of an atomic transition based on coherent pop...
Utilizing controllable collective light-atom interactions, I explore the properties of large ensembl...
Atomic clocks based on optical transitions are the most stable, and therefore precise, timekeepers a...
International audienceThe sensitivity of an atomic interferometer increases when the phase evolution...
Atom interferometry based sensors provide today the most precise measurements of time, inertial forc...
In this thesis, we describe an until now unexplored approach in the operation of atomic interferomet...
We have demonstrated an atomic frequency micrometer based on the coherent population beating phenome...
We generate entangled states of an ensemble of 5×10[superscript 4] [superscript 87]Rb atoms by optic...
We have demonstrated an atomic frequency micrometer based on the coherent population beating phenome...
Trapped ion clocks derive information from a reference atomic transition by repetitive interrogation...
Atomic clocks known as optical clocks are more accurate and stable than current timekeepers. Two qua...
International audienceIn our high-precision atom interferometer, the measured atomic phase shift is ...
We investigate theoretically and experimentally a nondestructive interferometric measurement of the ...
An accurate frequency control method and atomic clock based on the coherent population beating (CPB)...
Atomic clocks have reached the Standard Quantum Limit (SQL) of precision,1 set by the projection noi...
We have developed a new method of pulsed interrogation of an atomic transition based on coherent pop...
Utilizing controllable collective light-atom interactions, I explore the properties of large ensembl...
Atomic clocks based on optical transitions are the most stable, and therefore precise, timekeepers a...
International audienceThe sensitivity of an atomic interferometer increases when the phase evolution...
Atom interferometry based sensors provide today the most precise measurements of time, inertial forc...
In this thesis, we describe an until now unexplored approach in the operation of atomic interferomet...
We have demonstrated an atomic frequency micrometer based on the coherent population beating phenome...
We generate entangled states of an ensemble of 5×10[superscript 4] [superscript 87]Rb atoms by optic...
We have demonstrated an atomic frequency micrometer based on the coherent population beating phenome...
Trapped ion clocks derive information from a reference atomic transition by repetitive interrogation...
Atomic clocks known as optical clocks are more accurate and stable than current timekeepers. Two qua...
International audienceIn our high-precision atom interferometer, the measured atomic phase shift is ...
We investigate theoretically and experimentally a nondestructive interferometric measurement of the ...
An accurate frequency control method and atomic clock based on the coherent population beating (CPB)...
Atomic clocks have reached the Standard Quantum Limit (SQL) of precision,1 set by the projection noi...
We have developed a new method of pulsed interrogation of an atomic transition based on coherent pop...
Utilizing controllable collective light-atom interactions, I explore the properties of large ensembl...
Atomic clocks based on optical transitions are the most stable, and therefore precise, timekeepers a...