International audienceWe present two ultrastable lasers based on two vibration insensitive cavity designs, one with vertical optical axis geometry, the other horizontal. Ultrastable cavities are constructed with fused silica mirror substrates, shown to decrease the thermal noise limit, in order to improve the frequency stability over previous designs. Vibration sensitivity components measured are equal to or better than 1.5×10-11/ms-2 for each spatial direction, which shows significant improvement over previous studies. We have tested the very low dependence on the position of the cavity support points, in order to establish that our designs eliminate the need for fine tuning to achieve extremely low vibration sensitivity. Relative frequenc...
International audienceThe interrogation of an ultra-narrow clock transition of a single trapped ion ...
The work described in this document deals with optical frequency references, or ultrastable lasers. ...
We report an improved mounting configuration for a passive optical cavity used for laser frequency s...
International audienceWe present two ultrastable lasers based on two vibration insensitive cavity de...
We use the three-cornered-hat method to evaluate the absolute frequency stabilities of three differe...
This article presents the design and the conception of an ultra-compact Fabry-Pérot cavity which wil...
Lasers with stability of the order of 10.15 or more form the basis of frequency metrology and severa...
International audienceWe present the first experimental characterization of our ultracompact, ultras...
International audienceA pair of optical cavities are designed and set up so as to be insensitive to ...
We report the main features and performances of a prototype of an ultra-stable cavity designed and r...
An optical cavity is designed and implemented that is insensitive to vibration in all directions. Th...
Ultrastable high-spectral-purity lasers have served as the cornerstone behind optical atomic clocks,...
We present the design of an optical resonator setup, which is optimized for long-term stability and ...
In this work, a transportable ultra-stable laser system based on a Fabry-Pérot cavity with crystalli...
International audienceThe interrogation of an ultra-narrow clock transition of a single trapped ion ...
The work described in this document deals with optical frequency references, or ultrastable lasers. ...
We report an improved mounting configuration for a passive optical cavity used for laser frequency s...
International audienceWe present two ultrastable lasers based on two vibration insensitive cavity de...
We use the three-cornered-hat method to evaluate the absolute frequency stabilities of three differe...
This article presents the design and the conception of an ultra-compact Fabry-Pérot cavity which wil...
Lasers with stability of the order of 10.15 or more form the basis of frequency metrology and severa...
International audienceWe present the first experimental characterization of our ultracompact, ultras...
International audienceA pair of optical cavities are designed and set up so as to be insensitive to ...
We report the main features and performances of a prototype of an ultra-stable cavity designed and r...
An optical cavity is designed and implemented that is insensitive to vibration in all directions. Th...
Ultrastable high-spectral-purity lasers have served as the cornerstone behind optical atomic clocks,...
We present the design of an optical resonator setup, which is optimized for long-term stability and ...
In this work, a transportable ultra-stable laser system based on a Fabry-Pérot cavity with crystalli...
International audienceThe interrogation of an ultra-narrow clock transition of a single trapped ion ...
The work described in this document deals with optical frequency references, or ultrastable lasers. ...
We report an improved mounting configuration for a passive optical cavity used for laser frequency s...