We describe the construction and preliminary characterisation of an atomic clock on an atom chip. A sample of magnetically trapped 87Rb atoms is cooled below 1 µK, where Bose-Einstein condensation can take place. The trapped states |F,mF=|1,-1 and |2,1 define our clock transition, which is a two-photon – microwave and RF – transition. Atoms are trapped around a field B0 = 3.23 G for which there is only a second-order Zeeman shift of the clock frequency, which reduces the sensitivity of the clock to magnetic field fluctuations. We have designed an atom chip that includes a microwave coplanar waveguide which drives the 6.835 GHz transition. The whole clock cycle is performed in the vicinity of the chip surface, making the physics package comp...
Clocks based on cold atoms offer unbeatable accuracy and long-term stability, but their use in porta...
International audienceWe investigate the application of Ramsey spectroscopy for the development of a...
This thesis reports a high-performance Cs vapor cell atomic based on coherent population trapping (C...
We describe the construction and preliminary characterisation of an atomic clock on an atom chip. A ...
We describe the design and construction of an atomic clock on an atom chip, intended as a secondary ...
International audienceWe present an atomic clock based on the interrogation of magnetically trapped ...
This thesis covers two main subjects: the evaluation of the stability of a Trapped Atom Clock on a C...
We consider optimization of a rubidium atom clock that uses magnetically trapped Bose condensed atom...
International audienceWe present a compact atomic clock interrogating ultracold 87Rb magnetically tr...
Atom trapping on chip opens new perspectives for time and frequency metrology and integrated atom in...
A compact platform for cold atoms opens a range of exciting possibilities for portable, robust, and ...
This thesis work, performed in the frame of the MClocks European project (http://www.inrim.it/mclock...
We present an additive-manufactured microwave cavity for a Ramsey-type, double resonance, compact co...
International audienceWe present a compact atomic frequency standard based on the interrogation of m...
Clocks based on cold atoms offer unbeatable accuracy and long-term stability, but their use in porta...
International audienceWe investigate the application of Ramsey spectroscopy for the development of a...
This thesis reports a high-performance Cs vapor cell atomic based on coherent population trapping (C...
We describe the construction and preliminary characterisation of an atomic clock on an atom chip. A ...
We describe the design and construction of an atomic clock on an atom chip, intended as a secondary ...
International audienceWe present an atomic clock based on the interrogation of magnetically trapped ...
This thesis covers two main subjects: the evaluation of the stability of a Trapped Atom Clock on a C...
We consider optimization of a rubidium atom clock that uses magnetically trapped Bose condensed atom...
International audienceWe present a compact atomic clock interrogating ultracold 87Rb magnetically tr...
Atom trapping on chip opens new perspectives for time and frequency metrology and integrated atom in...
A compact platform for cold atoms opens a range of exciting possibilities for portable, robust, and ...
This thesis work, performed in the frame of the MClocks European project (http://www.inrim.it/mclock...
We present an additive-manufactured microwave cavity for a Ramsey-type, double resonance, compact co...
International audienceWe present a compact atomic frequency standard based on the interrogation of m...
Clocks based on cold atoms offer unbeatable accuracy and long-term stability, but their use in porta...
International audienceWe investigate the application of Ramsey spectroscopy for the development of a...
This thesis reports a high-performance Cs vapor cell atomic based on coherent population trapping (C...