We present a measurement of the absolute frequency of the 5 s2 1S0 to 5s5p 3P0 transition in 87Sr which is a secondary representation of the SI second. We describe the optical lattice clock apparatus used for the measurement, and we focus in detail on how its systematic frequency shifts are evaluated with a total fractional uncertainty of 1 × 10−17. Traceability to the International System of Units is provided via comparison to International Atomic Time (TAI). Gathering data over 5- and 15-day periods, with the lattice clock operating on average 74% of the time, we measure the frequency of the transition to be 429 228 004 229 873.1 (5) Hz, which corresponds to a fractional uncertainty of 1 × 10−15. We describe in detail how this uncertainty...
International audienceWe present a new evaluation of an <SUP>87</SUP>Sr optical lattice ...
The pursuit of better atomic clocks has advanced many fields of research, providing better quantum s...
International audienceWe report a frequency measurement of the S01-P03 transition of Sr87 atoms in a...
We report the absolute frequency measurement of the 5s2 1S0-5s5p 3P0 transition in 87Sr optical latt...
We report a frequency measurement of the 1S0-3P0 transition of 87Sr atoms in an optical lattice cloc...
We report a frequency measurement of the 1S0-3P0 transition of 87Sr atoms in an optical lattice cloc...
We present a new evaluation of an 87Sr optical lattice clock using spin polarized atoms. The frequen...
We present a new evaluation of an 87Sr optical lattice clock using spin polarized atoms. The frequen...
Strontium optical lattice clocks can measure the passage of time with extraordinary precision. Capit...
Accurate time keeping is critical to the function and advancement of many human endeavours. Atomic c...
Strontium optical lattice clocks can measure the passage of time with extraordinary precision. Capit...
International audienceWe present a new evaluation of an <SUP>87</SUP>Sr optical lattice ...
In 2013, for the first time ever, a many-atom optical lattice clock surpassed single ion clocks as t...
We report on a frequency ratio measurement of a Hg199-based optical lattice clock referencing a Sr87...
International audienceWe present a new evaluation of an <SUP>87</SUP>Sr optical lattice ...
International audienceWe present a new evaluation of an <SUP>87</SUP>Sr optical lattice ...
The pursuit of better atomic clocks has advanced many fields of research, providing better quantum s...
International audienceWe report a frequency measurement of the S01-P03 transition of Sr87 atoms in a...
We report the absolute frequency measurement of the 5s2 1S0-5s5p 3P0 transition in 87Sr optical latt...
We report a frequency measurement of the 1S0-3P0 transition of 87Sr atoms in an optical lattice cloc...
We report a frequency measurement of the 1S0-3P0 transition of 87Sr atoms in an optical lattice cloc...
We present a new evaluation of an 87Sr optical lattice clock using spin polarized atoms. The frequen...
We present a new evaluation of an 87Sr optical lattice clock using spin polarized atoms. The frequen...
Strontium optical lattice clocks can measure the passage of time with extraordinary precision. Capit...
Accurate time keeping is critical to the function and advancement of many human endeavours. Atomic c...
Strontium optical lattice clocks can measure the passage of time with extraordinary precision. Capit...
International audienceWe present a new evaluation of an <SUP>87</SUP>Sr optical lattice ...
In 2013, for the first time ever, a many-atom optical lattice clock surpassed single ion clocks as t...
We report on a frequency ratio measurement of a Hg199-based optical lattice clock referencing a Sr87...
International audienceWe present a new evaluation of an <SUP>87</SUP>Sr optical lattice ...
International audienceWe present a new evaluation of an <SUP>87</SUP>Sr optical lattice ...
The pursuit of better atomic clocks has advanced many fields of research, providing better quantum s...
International audienceWe report a frequency measurement of the S01-P03 transition of Sr87 atoms in a...