We used the high-precision laser interferometer technique of power recycling to characterize the optical loss of an all-reflective grating beam splitter. This beam splitter was used to set up a Michelson interferometer with a power-recycling resonator with a finesse of 883. Analyzing the results obtained, we determined the beam splitter's total optical loss to be (0.193+/-0.019)%. Low loss all-reflective beam splitters might find application in future high-power laser interferometers for the detection of gravitational waves
The beam splitter in high-power interferometers is subject to significant radiation-pressure fluctua...
The beam splitter in high-power interferometers is subject to significant radiation-pressure fluctua...
All-reflective interferometry based on nano-structured diffraction gratings offers new possibilities...
We used the high-precision laser interferometer technique of power recycling to characterize the opt...
We used the high-precision laser interferometer technique of power recycling to characterize the opt...
We used the high-precision laser interferometer technique of power recycling to characterize the opt...
We designed and fabricated an all-reflective 50/50 beam splitter based on a dielectric grating. This...
We designed and fabricated an all-reflective 50/50 beam splitter based on a dielectric grating. This...
The first realization of a reflective 50\50 beam splitter based on a dielectric diffraction grating ...
We designed and fabricated an all-reflective 50/50 beam splitter based on a dielectric grating. This...
We designed and fabricated an all-reflective 50/50 beam splitter based on a dielectric grating. This...
We designed and fabricated an all-reflective 50/50 beam splitter based on a dielectric grating. This...
Several ground-based large-scale and medium-scale laser interferometers (LIGO, VIRGO, GEO600 and TAM...
Experimental realization of power recycling in an interferometer with 30 m arm-length and suspended ...
Experimental realization of power recycling in an interferometer with 30 m arm-length and suspended ...
The beam splitter in high-power interferometers is subject to significant radiation-pressure fluctua...
The beam splitter in high-power interferometers is subject to significant radiation-pressure fluctua...
All-reflective interferometry based on nano-structured diffraction gratings offers new possibilities...
We used the high-precision laser interferometer technique of power recycling to characterize the opt...
We used the high-precision laser interferometer technique of power recycling to characterize the opt...
We used the high-precision laser interferometer technique of power recycling to characterize the opt...
We designed and fabricated an all-reflective 50/50 beam splitter based on a dielectric grating. This...
We designed and fabricated an all-reflective 50/50 beam splitter based on a dielectric grating. This...
The first realization of a reflective 50\50 beam splitter based on a dielectric diffraction grating ...
We designed and fabricated an all-reflective 50/50 beam splitter based on a dielectric grating. This...
We designed and fabricated an all-reflective 50/50 beam splitter based on a dielectric grating. This...
We designed and fabricated an all-reflective 50/50 beam splitter based on a dielectric grating. This...
Several ground-based large-scale and medium-scale laser interferometers (LIGO, VIRGO, GEO600 and TAM...
Experimental realization of power recycling in an interferometer with 30 m arm-length and suspended ...
Experimental realization of power recycling in an interferometer with 30 m arm-length and suspended ...
The beam splitter in high-power interferometers is subject to significant radiation-pressure fluctua...
The beam splitter in high-power interferometers is subject to significant radiation-pressure fluctua...
All-reflective interferometry based on nano-structured diffraction gratings offers new possibilities...