International audienceWe have investigated by spectroscopic ellipsometry (SE, 190–1700 nm) the optical properties of uniform, amorphous thin films of Ta$_{2}$O$_{5}$ and Nb$_{2}$O$_{5}$ as deposited and after annealing, and after so-called “doping” with Ti atoms which leads to mixed oxides. Ta$_{2}$O$_{5}$ and Ti:Ta$_{2}$O$_{5}$ are currently used as high-index components in Bragg reflectors for Gravitational Wave Detectors. Parallel to the optical investigation, we measured the mechanical energy dissipation of the same coatings, through the so-called “loss angle” ϕ = Q$^{−1}$, which quantifies the energy loss in materials. By applying the well-known Cody-Lorentz model in the analysis of SE data we have been able to derive accurate informat...
Advanced generations of ground-based gravitational wave detectors will use ultra-low-loss amorphous ...
High-reflection interference mirrors for current gravitational wave detectors (aLIGO, Advanced Virgo...
Low optical and mechanical loss Ta<sub>2</sub>O<sub>5</sub> amorphous coatin...
We have investigated by spectroscopic ellipsometry (SE, 190-1700 nm) the optical properties of unifo...
Amorphous mixed titania-tantala coatings are key components of Bragg reflectors in the gravitational...
International audienceThe interferometer mirrors of gravitational-wave detectors (GWDs) are Bragg re...
<p>Highly reflective dielectric mirror coatings are critical components in a range of precisio...
2021 Summer.Includes bibliographical references.Amorphous thin films prepared from vapor deposition ...
The exceptional stability required from high finesse optical cavities and high precision interferome...
Amorphous films of tantalum oxide (Ta2O5) are widely applied to build highly reflective mirrors used...
High finesse optical cavities of current interferometric gravitational-wave detectors are significan...
Ta2O5 mechanical losses seem to be the main cause of mirror thermal noise, limiting current interfer...
Here we report the first results comparing the temperature dependence of the mechanical dissipation ...
We report on the results of an extensive campaign of optical and mechanical characterization of the ...
The anodic tantalum oxide films were grown in 5ml/98% H 2 SO 4 electrolyte saturated with additional...
Advanced generations of ground-based gravitational wave detectors will use ultra-low-loss amorphous ...
High-reflection interference mirrors for current gravitational wave detectors (aLIGO, Advanced Virgo...
Low optical and mechanical loss Ta<sub>2</sub>O<sub>5</sub> amorphous coatin...
We have investigated by spectroscopic ellipsometry (SE, 190-1700 nm) the optical properties of unifo...
Amorphous mixed titania-tantala coatings are key components of Bragg reflectors in the gravitational...
International audienceThe interferometer mirrors of gravitational-wave detectors (GWDs) are Bragg re...
<p>Highly reflective dielectric mirror coatings are critical components in a range of precisio...
2021 Summer.Includes bibliographical references.Amorphous thin films prepared from vapor deposition ...
The exceptional stability required from high finesse optical cavities and high precision interferome...
Amorphous films of tantalum oxide (Ta2O5) are widely applied to build highly reflective mirrors used...
High finesse optical cavities of current interferometric gravitational-wave detectors are significan...
Ta2O5 mechanical losses seem to be the main cause of mirror thermal noise, limiting current interfer...
Here we report the first results comparing the temperature dependence of the mechanical dissipation ...
We report on the results of an extensive campaign of optical and mechanical characterization of the ...
The anodic tantalum oxide films were grown in 5ml/98% H 2 SO 4 electrolyte saturated with additional...
Advanced generations of ground-based gravitational wave detectors will use ultra-low-loss amorphous ...
High-reflection interference mirrors for current gravitational wave detectors (aLIGO, Advanced Virgo...
Low optical and mechanical loss Ta<sub>2</sub>O<sub>5</sub> amorphous coatin...