Interferometric gravitational wave observatories recently launched a new field of gravitational wave astronomy with the first detections of gravitational waves in 2015. The number and quality of these detections is limited in part by thermally induced vibrations in the mirrors, which show up as noise in these interferometers. One way to reduce this thermally induced noise is to use low temperature mirrors made of high purity single-crystalline silicon. However, these low temperatures must be achieved without increasing the mechanical vibration of the mirror surface or the vibration of any surface within close proximity to the mirrors. The vibration of either surface can impose a noise inducing phase shift on the light within the interferome...
Thermal noise in mirror suspension is and will be the most severe fundamental limit to the low-frequ...
The success of a precision experiment is often associated to the use of low temperature techniques. ...
Gravitational waves are distortions in the fabric of space-time caused by the acceleration of masses...
Interferometric gravitational wave observatories recently launched a new field of gravitational wave...
This chapter discusses how mirrors at cryogenic temperature can be used to improve the sensitivity o...
This chapter discusses how mirrors at cryogenic temperature can be used to improve the sensitivity o...
A new generation of gravitational wave interferometers is under study with the main goal to improve ...
To achieve the expected level of sensitivity of third-generation gravitational-wave (GW) observatori...
To achieve the expected level of sensitivity of third-generation gravitational-ave (GW) observatorie...
To achieve the expected level of sensitivity of third-generation gravitational-ave (GW) observatorie...
To achieve the expected level of sensitivity of third-generation gravitational-ave (GW) observatorie...
To achieve the expected level of sensitivity of third-generation gravitational-ave (GW) observatorie...
The suspension noise in interferometric gravitational wave detectors is caused by losses at the top ...
Recent direct detections of gravitational waves by the Advanced Laser Interferometry Gravitatio...
The suspension noise in interferometric gravitational wave detectors is caused by losses at the top ...
Thermal noise in mirror suspension is and will be the most severe fundamental limit to the low-frequ...
The success of a precision experiment is often associated to the use of low temperature techniques. ...
Gravitational waves are distortions in the fabric of space-time caused by the acceleration of masses...
Interferometric gravitational wave observatories recently launched a new field of gravitational wave...
This chapter discusses how mirrors at cryogenic temperature can be used to improve the sensitivity o...
This chapter discusses how mirrors at cryogenic temperature can be used to improve the sensitivity o...
A new generation of gravitational wave interferometers is under study with the main goal to improve ...
To achieve the expected level of sensitivity of third-generation gravitational-wave (GW) observatori...
To achieve the expected level of sensitivity of third-generation gravitational-ave (GW) observatorie...
To achieve the expected level of sensitivity of third-generation gravitational-ave (GW) observatorie...
To achieve the expected level of sensitivity of third-generation gravitational-ave (GW) observatorie...
To achieve the expected level of sensitivity of third-generation gravitational-ave (GW) observatorie...
The suspension noise in interferometric gravitational wave detectors is caused by losses at the top ...
Recent direct detections of gravitational waves by the Advanced Laser Interferometry Gravitatio...
The suspension noise in interferometric gravitational wave detectors is caused by losses at the top ...
Thermal noise in mirror suspension is and will be the most severe fundamental limit to the low-frequ...
The success of a precision experiment is often associated to the use of low temperature techniques. ...
Gravitational waves are distortions in the fabric of space-time caused by the acceleration of masses...