We have developed a 532 nm iodine stabilized laser system that may be suitable for the LISA mission (Laser Interferometer Space Antenna) or other future spaceborne missions. This system is based on an externally frequency-doubled Nd:YAG laser source and uses the molecular transfer spectroscopy technique for the frequency stabilization. This technique has been optimized for LISA: compactness (less than 1.1×1.1m2), vacuum compatibility, ease of use and initialization, minimization of the number of active components (acousto-optic modulators are both used for frequency shifting and phase modulating the pump beam). By locking on the a10 hyperfine component of the R(56)32-0 transition, we find an Allan standard deviation (σ) of 3×10-14 at 1 s an...
International audienceWe report on the development of a transportable iodine frequency stabilized la...
We present an absolute optical frequency reference based on precision spectroscopy of hyperfine tran...
We present an absolute optical frequency reference based on precision spectroscopy of hyperfine tra...
We have developed a 532 nm iodine stabilized laser system that may be suitable for the LISA mission ...
We have developed a 532 nm iodine stabilized laser system that may be suitable for the LISA mission ...
We have developed a 532 nm iodine stabilized laser system that may be suitable for the LISA mission ...
We have developed a 532 nm iodine stabilized laser system that may be suitable for the LISA mission ...
We have developed a 532 nm iodine stabilized laser system that may be suitable for the LISA mission ...
We have developed a 532 nm iodine stabilized laser system that may be suitable for the LISA mission ...
We have developed a 532 nm iodine stabilized laser system that may be suitable for the LISA mission ...
The LISA space mission requires laser frequency pre-stabilization of the 1064 nm laser sources. ...
International audienceWe plan to develop a compact and transportable iodine frequency stabilized las...
International audienceWe plan to develop a compact and transportable iodine frequency stabilized las...
International audienceWe plan to develop a compact and transportable iodine frequency stabilized las...
International audienceWe report on the development of a transportable iodine frequency stabilized la...
International audienceWe report on the development of a transportable iodine frequency stabilized la...
We present an absolute optical frequency reference based on precision spectroscopy of hyperfine tran...
We present an absolute optical frequency reference based on precision spectroscopy of hyperfine tra...
We have developed a 532 nm iodine stabilized laser system that may be suitable for the LISA mission ...
We have developed a 532 nm iodine stabilized laser system that may be suitable for the LISA mission ...
We have developed a 532 nm iodine stabilized laser system that may be suitable for the LISA mission ...
We have developed a 532 nm iodine stabilized laser system that may be suitable for the LISA mission ...
We have developed a 532 nm iodine stabilized laser system that may be suitable for the LISA mission ...
We have developed a 532 nm iodine stabilized laser system that may be suitable for the LISA mission ...
We have developed a 532 nm iodine stabilized laser system that may be suitable for the LISA mission ...
The LISA space mission requires laser frequency pre-stabilization of the 1064 nm laser sources. ...
International audienceWe plan to develop a compact and transportable iodine frequency stabilized las...
International audienceWe plan to develop a compact and transportable iodine frequency stabilized las...
International audienceWe plan to develop a compact and transportable iodine frequency stabilized las...
International audienceWe report on the development of a transportable iodine frequency stabilized la...
International audienceWe report on the development of a transportable iodine frequency stabilized la...
We present an absolute optical frequency reference based on precision spectroscopy of hyperfine tran...
We present an absolute optical frequency reference based on precision spectroscopy of hyperfine tra...