Achieving quantum limited sensitivity in a laser interferometric gravitational wave detector can be hindered by an optomechanical parametric instability of the interferometer. This instability is sustained by a large number of idle high-finesse Stokes modes supported by the system. We show that by optimizing the geometrical shape of the mirrors of the detector, one reduces the diffraction-limited finesse of unessential optical modes and effectively increases the instability threshold. Utilizing parameters of the Advanced LIGO system as a reference, we find that the proposed technique allows constructing a Fabry-Perot interferometer with round-trip diffraction loss of the fundamental mode not exceeding 5 ppm, whereas the loss of the first di...
© 2019 American Physical Society. Interferometric gravitational-wave detectors like LIGO need to be ...
Advanced LIGO and other ground-based interferometric gravitational-wave detectors use high laser pow...
International audienceA key action for enhancing the sensitivity of gravitational wave (GW) detector...
Achieving quantum limited sensitivity in a laser interferometric gravitational wave detector can be ...
Achieving quantum limited sensitivity in a laser interferometric gravitational wave detector can be ...
Interferometric gravitational-wave detectors like LIGO need to be able to measure changes in their a...
Parametric instabilities have long been studied as a potentially limiting effect in high-power inter...
Advanced gravitational wave interferometric detectors will operate at their design sensitivity with ...
Optical cavities, with both optimized resonant conditions and high quality factors, are important me...
Optical cavities, with both optimized resonant conditions and high quality factors, are important me...
Parametric instabilities have long been studied as a potentially limiting effect in high-power inter...
Parametric instabilities have long been studied as a potentially limiting effect in high-power inter...
Advanced interferometric gravitational-wave detectors use optical cavities to resonantly enhance the...
In high optical power laser interferometer gravitational wave detectors, it has been shown that reso...
Three-mode parametric instability has been predicted in advanced gravitational wave detectors. Here ...
© 2019 American Physical Society. Interferometric gravitational-wave detectors like LIGO need to be ...
Advanced LIGO and other ground-based interferometric gravitational-wave detectors use high laser pow...
International audienceA key action for enhancing the sensitivity of gravitational wave (GW) detector...
Achieving quantum limited sensitivity in a laser interferometric gravitational wave detector can be ...
Achieving quantum limited sensitivity in a laser interferometric gravitational wave detector can be ...
Interferometric gravitational-wave detectors like LIGO need to be able to measure changes in their a...
Parametric instabilities have long been studied as a potentially limiting effect in high-power inter...
Advanced gravitational wave interferometric detectors will operate at their design sensitivity with ...
Optical cavities, with both optimized resonant conditions and high quality factors, are important me...
Optical cavities, with both optimized resonant conditions and high quality factors, are important me...
Parametric instabilities have long been studied as a potentially limiting effect in high-power inter...
Parametric instabilities have long been studied as a potentially limiting effect in high-power inter...
Advanced interferometric gravitational-wave detectors use optical cavities to resonantly enhance the...
In high optical power laser interferometer gravitational wave detectors, it has been shown that reso...
Three-mode parametric instability has been predicted in advanced gravitational wave detectors. Here ...
© 2019 American Physical Society. Interferometric gravitational-wave detectors like LIGO need to be ...
Advanced LIGO and other ground-based interferometric gravitational-wave detectors use high laser pow...
International audienceA key action for enhancing the sensitivity of gravitational wave (GW) detector...