Thermal noise in mirror suspension wires is the most severe limit to the low frequency sensitivity of interferometric gravitational wave detectors presently under construction. The pendulum mode mechanical quality factor of the suspension last stage significantly affects the noise level of the detector output. The monolithic design for this suspension stage, using a low dissipation material, is proposed for Virgo. High mechanical Qs and high breaking strengths have been obtained for monolithic fused silica fibers. A low dissipation and high strength bonding technique using potassium silicate bonding is proposed
The detection of gravitational waves is one of the most challenging prospects faced by experimental ...
The detection of gravitational waves is one of the most challenging prospects faced by experimental ...
Detection of gravitational waves from astrophysical sources remains one of the most challenging prob...
Thermal noise in mirror suspension wires is the most severe limit to the low frequency sensitivity o...
Thermal noise in mirror suspension wires is the main limitation of low-frequency sensitivity of inte...
Abstract The expected current limit to the Virgo sensitivity is presented. New materials to realiz...
Thermal noise in mirror suspension is and will be the most severe fundamental limit to the low-frequ...
To minimize thermal noise in gravitational-wave detectors high mechanical quality factors are requir...
High purity fused silica has become the cornerstone choice for use in the final monolithic stage of ...
Thermal noise from the suspension fibers used in the mirror pendulums in current gravitational-wave ...
The detection of gravitational waves is one of the most challenging prospects faced by experimental ...
The detection of gravitational waves is one of the most challenging prospects faced by experimental ...
The detection of gravitational waves is one of the most challenging prospects faced by experimental ...
Thermal noise in mirror suspension will be the most severe fundamental limit to the low-frequency se...
High purity fused silica has become the cornerstone choice for use in the final monolithic stage of ...
The detection of gravitational waves is one of the most challenging prospects faced by experimental ...
The detection of gravitational waves is one of the most challenging prospects faced by experimental ...
Detection of gravitational waves from astrophysical sources remains one of the most challenging prob...
Thermal noise in mirror suspension wires is the most severe limit to the low frequency sensitivity o...
Thermal noise in mirror suspension wires is the main limitation of low-frequency sensitivity of inte...
Abstract The expected current limit to the Virgo sensitivity is presented. New materials to realiz...
Thermal noise in mirror suspension is and will be the most severe fundamental limit to the low-frequ...
To minimize thermal noise in gravitational-wave detectors high mechanical quality factors are requir...
High purity fused silica has become the cornerstone choice for use in the final monolithic stage of ...
Thermal noise from the suspension fibers used in the mirror pendulums in current gravitational-wave ...
The detection of gravitational waves is one of the most challenging prospects faced by experimental ...
The detection of gravitational waves is one of the most challenging prospects faced by experimental ...
The detection of gravitational waves is one of the most challenging prospects faced by experimental ...
Thermal noise in mirror suspension will be the most severe fundamental limit to the low-frequency se...
High purity fused silica has become the cornerstone choice for use in the final monolithic stage of ...
The detection of gravitational waves is one of the most challenging prospects faced by experimental ...
The detection of gravitational waves is one of the most challenging prospects faced by experimental ...
Detection of gravitational waves from astrophysical sources remains one of the most challenging prob...