We report on the optical characterization of an ultrahigh diffraction efficiency grating in a first-order Littrow configuration. The apparatus used was an optical cavity built from the grating under investigation and an additional high-reflection mirror. The measurement of the cavity finesse provided precise information about the grating's diffraction efficiency and its optical loss. We measured a finesse of 1580 from which we deduced a diffraction efficiency of (99.635±0.016)% and an overall optical loss due to scattering and absorption of just 0.185%. Such high-quality gratings, including the tool used for their characterization, might apply for future gravitational wave detectors. For example, the demonstrated cavity itself presents an a...
We report on the first demonstration of a fully suspended 10m Fabry-Perot cavity incorporating a wav...
Diffraction gratings have been considered as input couplers for Fabry–Perot cavities in future gravi...
An optical characterization method with high spectral resolution for broadband, multilayer dielectri...
We report on the optical characterization of an ultrahigh diffraction efficiency grating in a first-...
All-reflective interferometry based on nano-structured diffraction gratings offers new possibilities...
By combining electron beam lithography with coating processes, very shallow gratings with diffractio...
All-reflective interferometry based on nano-structured diffraction gratings offers new possibilities...
All-reflective optical systems are under consideration for future gravitational wave detector topolo...
Diffraction gratings have been proposed as core elements in future laser-interferometric gravitation...
Diffraction gratings have been proposed as core elements in future laser-interferometric gravitation...
Diffraction gratings have been considered as input couplers for Fabry-Perot cavities in future gravi...
Einstein’s Theory of General Relativity describes gravity as the curvature of space-time and predict...
Diffraction gratings have been considered as input couplers for Fabry-Perot cavities in future gravi...
All-reflective configurations have been suggested for future laser-interferometric gravitational wav...
We report on the first demonstration of a fully suspended 10m Fabry-Perot cavity incorporating a wav...
Diffraction gratings have been considered as input couplers for Fabry–Perot cavities in future gravi...
An optical characterization method with high spectral resolution for broadband, multilayer dielectri...
We report on the optical characterization of an ultrahigh diffraction efficiency grating in a first-...
All-reflective interferometry based on nano-structured diffraction gratings offers new possibilities...
By combining electron beam lithography with coating processes, very shallow gratings with diffractio...
All-reflective interferometry based on nano-structured diffraction gratings offers new possibilities...
All-reflective optical systems are under consideration for future gravitational wave detector topolo...
Diffraction gratings have been proposed as core elements in future laser-interferometric gravitation...
Diffraction gratings have been proposed as core elements in future laser-interferometric gravitation...
Diffraction gratings have been considered as input couplers for Fabry-Perot cavities in future gravi...
Einstein’s Theory of General Relativity describes gravity as the curvature of space-time and predict...
Diffraction gratings have been considered as input couplers for Fabry-Perot cavities in future gravi...
All-reflective configurations have been suggested for future laser-interferometric gravitational wav...
We report on the first demonstration of a fully suspended 10m Fabry-Perot cavity incorporating a wav...
Diffraction gratings have been considered as input couplers for Fabry–Perot cavities in future gravi...
An optical characterization method with high spectral resolution for broadband, multilayer dielectri...