The ESA mission “Space Optical Clock” project aims at operating an optical lattice clock on the ISS in approximately 2023. The scientific goals of the mission are to perform tests of fundamental physics, to enable space-assisted relativistic geodesy and to intercompare optical clocks on the ground using microwave and optical links. The performance goal of the space clock is less than 1 × 10-17 uncertainty and 1 × 10-15 τ-1/2 instability. Within an EU-FP7-funded project, a strontium optical lattice clock demonstrator has been developed. Goal performances are instability below 1 × 10-15 τ-1/2 and fractional inaccuracy 5 × 10-17. For the design of the clock, techniques and approaches suitable for later space application are used, such as modul...
International audienceUltra-precise optical clocks in space will allow new studies in fundamental ph...
International audienceUltra-precise optical clocks in space will allow new studies in fundamental ph...
International audienceUltra-precise optical clocks in space will allow new studies in fundamental ph...
The ESA mission “Space Optical Clock” project aims at operating an optical lattice clock on the ISS ...
The ESA mission “Space Optical Clock” project aims at operating an optical lattice clock on the ISS ...
International audienceThe ESA mission "Space Optical Clock" project aims at operating an o...
International audienceThe ESA mission "Space Optical Clock" project aims at operating an o...
International audienceThe ESA mission "Space Optical Clock" project aims at operating an o...
The use of ultra-precise optical clocks in space (“master clocks”) will allow for a range of new a...
International audienceThe use of ultra-precise optical clocks in space ("master clocks") w...
The use of ultra-precise optical clocks in space (“master clocks”) will allow for a range of new a...
International audienceThe use of ultra-precise optical clocks in space ("master clocks") w...
International audienceThe use of ultra-precise optical clocks in space ("master clocks") w...
International audienceThe use of ultra-precise optical clocks in space ("master clocks") w...
International audienceUltra-precise optical clocks in space will allow new studies in fundamental ph...
International audienceUltra-precise optical clocks in space will allow new studies in fundamental ph...
International audienceUltra-precise optical clocks in space will allow new studies in fundamental ph...
International audienceUltra-precise optical clocks in space will allow new studies in fundamental ph...
The ESA mission “Space Optical Clock” project aims at operating an optical lattice clock on the ISS ...
The ESA mission “Space Optical Clock” project aims at operating an optical lattice clock on the ISS ...
International audienceThe ESA mission "Space Optical Clock" project aims at operating an o...
International audienceThe ESA mission "Space Optical Clock" project aims at operating an o...
International audienceThe ESA mission "Space Optical Clock" project aims at operating an o...
The use of ultra-precise optical clocks in space (“master clocks”) will allow for a range of new a...
International audienceThe use of ultra-precise optical clocks in space ("master clocks") w...
The use of ultra-precise optical clocks in space (“master clocks”) will allow for a range of new a...
International audienceThe use of ultra-precise optical clocks in space ("master clocks") w...
International audienceThe use of ultra-precise optical clocks in space ("master clocks") w...
International audienceThe use of ultra-precise optical clocks in space ("master clocks") w...
International audienceUltra-precise optical clocks in space will allow new studies in fundamental ph...
International audienceUltra-precise optical clocks in space will allow new studies in fundamental ph...
International audienceUltra-precise optical clocks in space will allow new studies in fundamental ph...
International audienceUltra-precise optical clocks in space will allow new studies in fundamental ph...