High purity fused silica has become the cornerstone choice for use in the final monolithic stage of the mirror suspensions in the gravitational wave observatories Advanced LIGO (aLIGO) and Advanced Virgo (AdV). The ultra-low thermal noise contributed by these suspensions is one of the key improvements that permitted the Nobel prize winning first direct measurement of gravitational waves in 2015. This paper outlines the first in situ study undertaken to analyse the thermal noise of the final monolithic stage of the aLIGO Hanford detector mirror suspensions. We analysed short operational periods of this detector, when high excitation of the transverse 'violin' modes of the silica suspension fibres occurred. This allowed detailed measurements ...
A pivotal aspect in increasing the sensitivity of the Advanced LIGO (aLIGO) detectors to enable for ...
The detection of gravitational waves remains one of the most challenging prospects faced by experime...
Detection of gravitational waves from astrophysical sources remains one of the most challenging prob...
High purity fused silica has become the cornerstone choice for use in the final monolithic stage of ...
High purity fused silica has become the cornerstone choice for use in the final monolithic stage of ...
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 most severe limit to the low frequency sensitivity o...
To further increase the sensitivity of the advanced LIGO (aLIGO) gravitational wave detectors, two m...
Thermal noise from the suspension fibers used in the mirror pendulums in current gravitational-wave ...
Thermal noise in mirror suspension is and will be the most severe fundamental limit to the low-frequ...
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...
Detection of gravitational waves from astrophysical sources remains one of the most challenging prob...
A pivotal aspect in increasing the sensitivity of the Advanced LIGO (aLIGO) detectors to enable for ...
The detection of gravitational waves remains one of the most challenging prospects faced by experime...
Detection of gravitational waves from astrophysical sources remains one of the most challenging prob...
High purity fused silica has become the cornerstone choice for use in the final monolithic stage of ...
High purity fused silica has become the cornerstone choice for use in the final monolithic stage of ...
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 most severe limit to the low frequency sensitivity o...
To further increase the sensitivity of the advanced LIGO (aLIGO) gravitational wave detectors, two m...
Thermal noise from the suspension fibers used in the mirror pendulums in current gravitational-wave ...
Thermal noise in mirror suspension is and will be the most severe fundamental limit to the low-frequ...
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...
Detection of gravitational waves from astrophysical sources remains one of the most challenging prob...
A pivotal aspect in increasing the sensitivity of the Advanced LIGO (aLIGO) detectors to enable for ...
The detection of gravitational waves remains one of the most challenging prospects faced by experime...
Detection of gravitational waves from astrophysical sources remains one of the most challenging prob...