Collisions with background gas can perturb the transition frequency of trapped ions in an optical atomic clock. We develop a nonperturbative framework based on a quantum channel description of the scattering process and use it to derive a master equation which leads to a simple analytic expression for the collisional frequency shift. As a demonstration of our method, we calculate the frequency shift of the Sr+ optical atomic clock transition due to elastic collisions with helium.Peer reviewed: YesNRC publication: Ye
A technique to cancel the frequency shift due to cold collisions of laser-cooled atoms is proposed. ...
A scheme for a microwave atomic clock is proposed for Cs or Rb atoms trapped in a blue detuned optic...
We demonstrate a Rb fountain clock which has a small cold collision shift that is cancelled by detun...
We theoretically study the effects of elastic collisions on the determination of frequency standards...
Laser-assisted ion-atom collisions are considered in terms of a nonperturbative quantum mechanical d...
A few years ago atomic fountains using cold ^133Cs atoms led to a breakthrough in the field of atomi...
International audienceWe present a detailed analysis of the effect of light dark matter (DM) on atom...
Trapped ion clocks derive information from a reference atomic transition by repetitive interrogation...
We present a comprehensive study of the frequency shifts associated with the lattice potential in a ...
International audienceQuantum engineering of time-separated Raman laser pulses in three-level system...
Strontium optical lattice clocks at JILA recently demonstrated record-high accuracy and stability. T...
Optical clocks realize transition frequencies between atomic energy levels with a relative uncertain...
We demonstrate a Rb fountain clock which has a small cold collision shift that is cancelled by detun...
Recent developments in frequency metrology and optical clocks have been based on electronic transiti...
We study nonsequential double ionization (NSDI) processes of an atom by applying the frequency-domai...
A technique to cancel the frequency shift due to cold collisions of laser-cooled atoms is proposed. ...
A scheme for a microwave atomic clock is proposed for Cs or Rb atoms trapped in a blue detuned optic...
We demonstrate a Rb fountain clock which has a small cold collision shift that is cancelled by detun...
We theoretically study the effects of elastic collisions on the determination of frequency standards...
Laser-assisted ion-atom collisions are considered in terms of a nonperturbative quantum mechanical d...
A few years ago atomic fountains using cold ^133Cs atoms led to a breakthrough in the field of atomi...
International audienceWe present a detailed analysis of the effect of light dark matter (DM) on atom...
Trapped ion clocks derive information from a reference atomic transition by repetitive interrogation...
We present a comprehensive study of the frequency shifts associated with the lattice potential in a ...
International audienceQuantum engineering of time-separated Raman laser pulses in three-level system...
Strontium optical lattice clocks at JILA recently demonstrated record-high accuracy and stability. T...
Optical clocks realize transition frequencies between atomic energy levels with a relative uncertain...
We demonstrate a Rb fountain clock which has a small cold collision shift that is cancelled by detun...
Recent developments in frequency metrology and optical clocks have been based on electronic transiti...
We study nonsequential double ionization (NSDI) processes of an atom by applying the frequency-domai...
A technique to cancel the frequency shift due to cold collisions of laser-cooled atoms is proposed. ...
A scheme for a microwave atomic clock is proposed for Cs or Rb atoms trapped in a blue detuned optic...
We demonstrate a Rb fountain clock which has a small cold collision shift that is cancelled by detun...