This paper presents a detailed accuracy budget of two independent strontium optical lattice clocks at the National Laboratory FAMO (KL FAMO) probed with a single shared ultra-narrow laser. The combined instability of the two frequency standards was $7 \times 10^{-17}$ after $10^{5}s$ of averaging
International audienceWe report a frequency measurement of the S01-P03 transition of Sr87 atoms in a...
International audienceWe report a frequency measurement of the S01-P03 transition of Sr87 atoms in a...
A Sr-87 optical lattice clock is built at the National Institute of Metrology (NIM) of China. The at...
Accurate time keeping is critical to the function and advancement of many human endeavours. Atomic c...
Optical atomic clocks require local oscillators with exceptional optical coherence owing to the chal...
Strontium optical lattice clocks are proven to be excellent timekeepers. Their exceptional performan...
Strontium optical lattice clocks can measure the passage of time with extraordinary precision. Capit...
The pursuit of better atomic clocks has advanced many fields of research, providing better quantum s...
Strontium optical lattice clocks are proven to be excellent timekeepers. Their exceptional performan...
The subject of this thesis is the development of an atomic physics apparatus to study the possibilit...
Strontium optical lattice clocks can measure the passage of time with extraordinary precision. Capit...
We present a system of two independent strontium optical lattice standards probed with a single shar...
Due to the recent success, in terms of accuracy and precision, of a number of strontium optical latt...
International audienceWe report a frequency measurement of the S01-P03 transition of Sr87 atoms in a...
Due to the recent success, in terms of accuracy and precision, of a number of strontium optical latt...
International audienceWe report a frequency measurement of the S01-P03 transition of Sr87 atoms in a...
International audienceWe report a frequency measurement of the S01-P03 transition of Sr87 atoms in a...
A Sr-87 optical lattice clock is built at the National Institute of Metrology (NIM) of China. The at...
Accurate time keeping is critical to the function and advancement of many human endeavours. Atomic c...
Optical atomic clocks require local oscillators with exceptional optical coherence owing to the chal...
Strontium optical lattice clocks are proven to be excellent timekeepers. Their exceptional performan...
Strontium optical lattice clocks can measure the passage of time with extraordinary precision. Capit...
The pursuit of better atomic clocks has advanced many fields of research, providing better quantum s...
Strontium optical lattice clocks are proven to be excellent timekeepers. Their exceptional performan...
The subject of this thesis is the development of an atomic physics apparatus to study the possibilit...
Strontium optical lattice clocks can measure the passage of time with extraordinary precision. Capit...
We present a system of two independent strontium optical lattice standards probed with a single shar...
Due to the recent success, in terms of accuracy and precision, of a number of strontium optical latt...
International audienceWe report a frequency measurement of the S01-P03 transition of Sr87 atoms in a...
Due to the recent success, in terms of accuracy and precision, of a number of strontium optical latt...
International audienceWe report a frequency measurement of the S01-P03 transition of Sr87 atoms in a...
International audienceWe report a frequency measurement of the S01-P03 transition of Sr87 atoms in a...
A Sr-87 optical lattice clock is built at the National Institute of Metrology (NIM) of China. The at...