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Article Dans Une Revue Classical and Quantum Gravity Année : 2010

Mechanical characterization of uncoated and Ta2O5-single-layer-coated SiO2 substrates: results from GeNS suspension, and the CoaCh project

Résumé

Thermal noise of the mirrors limits the sensitivity of interferometric gravitational wave detectors in the frequency range between 50 to 300 Hz. According to the Fluctuation-Dissipation theorem, the thermal noise amplitude is proportional to the mechanical loss of the mirrors. Fused silica substrates loss angle widely ranges from 10 −9 to 10 −6, while for the coating it is in around 10 −4. Loss angle measurements in ultra low mechanical loss materials are normally affected by a large systematic error due to the excess losses introduced by the suspension system used to hold the samples. An innovative measurement system (GeNS, Gentle Nodal Suspension), where the disk-shaped sample is suspended in equilibrium on the top of a sphere, touching in one of the nodal points of vibration, has been developed in INFN Florence Virgo laboratory. The advantages of this system are: i) the good reproducibility of loss angle measurements ; ii) one surface only (in any case uncoated) of the sample is touched ; iii) the contact surface is minimized because of the absence of applied forces. This suspension has been used to characterize annealing and coating deposition effects on mechanical quality factor Q. An interesting comparison/analysis of these effects on mechanical, optical, chemical and surface properties using spectroscopic ellipsometry, X-ray photoelectron spectroscopy and atomic force microscope has been carried out.
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Dates et versions

hal-00587622 , version 1 (21-04-2011)

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E Cesarini, M Prato, M Lorenzini, G Cagnoli, E Campagna, et al.. Mechanical characterization of uncoated and Ta2O5-single-layer-coated SiO2 substrates: results from GeNS suspension, and the CoaCh project. Classical and Quantum Gravity, 2010, 27 (8), pp.84031. ⟨10.1088/0264-9381/27/8/084031⟩. ⟨hal-00587622⟩

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