The use of fused-silica ribbons as suspensions in gravitational wave interferometers can result in significant improvements in pendulum mode thermal noise. Surface loss sets a lower bound to the level of noise achievable, at what level depends on the dissipation depth and other physical parameters. For LIGO II, the high breaking strength of pristine fused silica filaments, the correct choice of ribbon aspect ratio (to minimize thermoelastic damping), and low dissipation depth combined with the other achievable parameters can reduce the pendulum mode thermal noise in a ribbon suspension well below the radiation pressure noise. Despite producing higher levels of pendulum mode thermal noise, cylindrical fiber suspensions provide an acceptable ...
Thermal noise in mirror suspension wires is the main limitation of low-frequency sensitivity of inte...
Thermal noise from the suspension fibers used in the mirror pendulums in current gravitational-wave ...
Abstract The expected current limit to the Virgo sensitivity is presented. New materials to realiz...
The use of fused-silica ribbons as suspensions in gravitational wave interferometers can result in s...
The detection of gravitational waves remains one of the most challenging prospects faced by experime...
The detection of gravitational waves remains one of the most challenging prospects faced by experime...
The detection of gravitational waves remains one of the most challenging prospects faced by experime...
The detection of gravitational waves remains one of the most challenging prospects faced by experime...
The detection of gravitational waves remains one of the most challenging prospects faced by experime...
The suspension noise in interferometric gravitational wave detectors is caused by losses at the top ...
The suspension noise in interferometric gravitational wave detectors is caused by losses at the top ...
High purity fused silica has become the cornerstone choice for use in the final monolithic stage of ...
Internal thermal noise is expected to be a limiting noise source in the most sensitive frequency ban...
Internal thermal noise is expected to be a limiting noise source in the most sensitive frequency ban...
Internal thermal noise is expected to be a limiting noise source in the most sensitive frequency ban...
Thermal noise in mirror suspension wires is the main limitation of low-frequency sensitivity of inte...
Thermal noise from the suspension fibers used in the mirror pendulums in current gravitational-wave ...
Abstract The expected current limit to the Virgo sensitivity is presented. New materials to realiz...
The use of fused-silica ribbons as suspensions in gravitational wave interferometers can result in s...
The detection of gravitational waves remains one of the most challenging prospects faced by experime...
The detection of gravitational waves remains one of the most challenging prospects faced by experime...
The detection of gravitational waves remains one of the most challenging prospects faced by experime...
The detection of gravitational waves remains one of the most challenging prospects faced by experime...
The detection of gravitational waves remains one of the most challenging prospects faced by experime...
The suspension noise in interferometric gravitational wave detectors is caused by losses at the top ...
The suspension noise in interferometric gravitational wave detectors is caused by losses at the top ...
High purity fused silica has become the cornerstone choice for use in the final monolithic stage of ...
Internal thermal noise is expected to be a limiting noise source in the most sensitive frequency ban...
Internal thermal noise is expected to be a limiting noise source in the most sensitive frequency ban...
Internal thermal noise is expected to be a limiting noise source in the most sensitive frequency ban...
Thermal noise in mirror suspension wires is the main limitation of low-frequency sensitivity of inte...
Thermal noise from the suspension fibers used in the mirror pendulums in current gravitational-wave ...
Abstract The expected current limit to the Virgo sensitivity is presented. New materials to realiz...