The T2L2 project (time transfer by laser link) allows for the synchronization of remote ultra-stable clocks over intercontinental distances. The principle is derived from satellite laser ranging technology with dedicated space equipment designed to record arrival times of laser pulses at the satellite. The space segment has been launched in June 2008 as a passenger experiment on the ocean altimetry satellite Jason 2. T2L2 had been specified to yield a time stability of better than 1 ps over 1000 s integration time and an accuracy of better than 100 ps. This level of performance requires a rigorous data processing which can be performed only with a comprehensive calibration model of the whole instrumentation. For this purpose, several exper...
International audienceThe new generation of optical time transfer will allow the synchronization of ...
International audienceThe new generation of optical time transfer will allow the synchronization of ...
International audienceThe new generation of optical time transfer will allow the synchronization of ...
International audienceThe T2L2 project (time transfer by laser link) allows for the synchronization ...
International audienceThe Time Transfer by Laser Link (T2L2) is a very high resolution time transfer...
International audienceThe Time Transfer by Laser Link (T2L2) is a very high resolution time transfer...
International audienceT2L2 (Time Transfer by Laser Link), developed by both CNES and OCA permits the...
The T2L2 (Time Transfer by Laser Link) scheme, based on the technology of satellite laser ranging (S...
The T2L2 (Time Transfer by Laser Link) scheme, based on the technology of satellite laser ranging (S...
The T2L2 (Time Transfer by Laser Link) scheme, based on the technology of satellite laser ranging (S...
The T2L2 (Time Transfer by Laser Link) scheme, based on the technology of satellite laser ranging (S...
The T2L2 (Time Transfer by Laser Link) scheme, based on the technology of satellite laser ranging (S...
International audienceT2L2 (Time Transfer by Laser Link), developed by both CNES and OCA permits the...
International audienceT2L2 (Time Transfer by Laser Link), developed by both CNES and OCA permits the...
International audienceT2L2 (Time Transfer by Laser Link), developed by both CNES and OCA permits the...
International audienceThe new generation of optical time transfer will allow the synchronization of ...
International audienceThe new generation of optical time transfer will allow the synchronization of ...
International audienceThe new generation of optical time transfer will allow the synchronization of ...
International audienceThe T2L2 project (time transfer by laser link) allows for the synchronization ...
International audienceThe Time Transfer by Laser Link (T2L2) is a very high resolution time transfer...
International audienceThe Time Transfer by Laser Link (T2L2) is a very high resolution time transfer...
International audienceT2L2 (Time Transfer by Laser Link), developed by both CNES and OCA permits the...
The T2L2 (Time Transfer by Laser Link) scheme, based on the technology of satellite laser ranging (S...
The T2L2 (Time Transfer by Laser Link) scheme, based on the technology of satellite laser ranging (S...
The T2L2 (Time Transfer by Laser Link) scheme, based on the technology of satellite laser ranging (S...
The T2L2 (Time Transfer by Laser Link) scheme, based on the technology of satellite laser ranging (S...
The T2L2 (Time Transfer by Laser Link) scheme, based on the technology of satellite laser ranging (S...
International audienceT2L2 (Time Transfer by Laser Link), developed by both CNES and OCA permits the...
International audienceT2L2 (Time Transfer by Laser Link), developed by both CNES and OCA permits the...
International audienceT2L2 (Time Transfer by Laser Link), developed by both CNES and OCA permits the...
International audienceThe new generation of optical time transfer will allow the synchronization of ...
International audienceThe new generation of optical time transfer will allow the synchronization of ...
International audienceThe new generation of optical time transfer will allow the synchronization of ...