Mechanical and optical thermal noises play an important role in many precise opto-mechanical experi-ments, in which positions of test bodies are monitored by laser beams. Much of the research in this area was driven by the physics of gravitational wave interferometers, to counteract the mirror's multi-layered di-electric coating thermal noise. Coating thermal noise is directly related to structural dissipation inside the material through the loss angle. In view of future upgrades of gravitational wave detectors, increasing the coatings mechanical performances, by lowering the loss angle and retaining their outstanding optical and morphological properties, is fundamental. The measurement of the coating loss angle requires substrates to be st...
The work of this thesis involves the analysis of mechanical losses associated with coated test masse...
International audienceWe present the results of mechanical characterizations of many different high-...
Interferometric gravitational wave detectors use mirrors whose substrates are formed from materials ...
Mechanical and optical thermal noises play an important role in many precise opto-mechanical experi-...
Mechanical and optical thermal noises play an important role in many precise opto-mechanical experim...
Thermal noise of the mirrors limits the sensitivity of interferometric gravitational-wave detectors ...
International audienceThermal noise of the mirrors limits the sensitivity of interferometric gravita...
All current gravitational wave detectors use test masses coated with alternating layers of two diffe...
We report on the persistence of mechanical loss with time of ion beam sputtered dielectric coatings ...
Low internal friction coatings are key components of advanced technologies such as optical atomic cl...
Materials with a high quality factor are used, for the test mass and suspension elements, in interfe...
Low internal friction coatings are key components of advanced technologies such as optical atomic cl...
Brownian thermal noise generated by mechanical losses in thin film coatings limits the sensitivity o...
A significant limiting factor on the sensitivity of interferometric gravitational wave detectors has...
We have measured the mechanical loss of a dielectric multilayer reflective coating (ion-beam sputter...
The work of this thesis involves the analysis of mechanical losses associated with coated test masse...
International audienceWe present the results of mechanical characterizations of many different high-...
Interferometric gravitational wave detectors use mirrors whose substrates are formed from materials ...
Mechanical and optical thermal noises play an important role in many precise opto-mechanical experi-...
Mechanical and optical thermal noises play an important role in many precise opto-mechanical experim...
Thermal noise of the mirrors limits the sensitivity of interferometric gravitational-wave detectors ...
International audienceThermal noise of the mirrors limits the sensitivity of interferometric gravita...
All current gravitational wave detectors use test masses coated with alternating layers of two diffe...
We report on the persistence of mechanical loss with time of ion beam sputtered dielectric coatings ...
Low internal friction coatings are key components of advanced technologies such as optical atomic cl...
Materials with a high quality factor are used, for the test mass and suspension elements, in interfe...
Low internal friction coatings are key components of advanced technologies such as optical atomic cl...
Brownian thermal noise generated by mechanical losses in thin film coatings limits the sensitivity o...
A significant limiting factor on the sensitivity of interferometric gravitational wave detectors has...
We have measured the mechanical loss of a dielectric multilayer reflective coating (ion-beam sputter...
The work of this thesis involves the analysis of mechanical losses associated with coated test masse...
International audienceWe present the results of mechanical characterizations of many different high-...
Interferometric gravitational wave detectors use mirrors whose substrates are formed from materials ...