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11 results for “photonic devices”
3D printed photonics devices
<p>This data contains the 1-D intensity measurements in xls and pdf file formats along with the device images</p>
Two dimensional materials for photonic devices
<p>Video-presentation with the summary of the two dimensional materials for photonic devices project.</p> <p>This project has received funding from the European Union’s Horizon 2020 research and innovation programme under grant agreement No 840064</p>
Dataset for the development of a "Flow cell for operando X-ray photon-in-photon-out studies on photo-electrochemical thin film devices"
<p>All raw experimental data concerning this published ChemRxiv manuscript: https://doi.org/10.26434/chemrxiv.12382529.v1 which is now published slightly revised here: https://doi.org/10.12688/openreseurope.14433.1<br> <br> The dataset comprises raw data, analysis and short description:<br> - the CAD-files of the operando cell<br> - the grazing-incidence X-ray diffraction (GIXRD) files of the as-synthesized thin film samples<br> - the high-energy resolution fluoresence-detected (HERFD) X-ray absorption (XAS) files of thin films during photoelectrochemical experimentation<br> - the photoelectrochemical data gathered during HERFD-XAS experiments<br> - the non-operando photoelectrochemical data on the thin film samples<br> - scanning electron microscopy (SEM) image of a representative thin film cross-section<br> - the extended data contains additional information arranged in a word document that are directly linked to the main manuscript</p>
Data from: Hybrid Integration of Silicon Photonic Devices on Lithium Niobate for Optomechanical Wavelength Conversion
<p>Source data for Figures.</p>
Data supporting the publication "Enhanced nonlinear optomechanics in a coupled-mode photonic crystal device"
<p>Data supporting the publication "Enhanced nonlinear optomechanics in a coupled-mode photonic crystal device". Set contains raw measured data and plotted data points for all figures in the main text.</p>
Catalogue of X-ray photon fluence spectra of electronic brachytherapy device Axxent manufactured by Xoft
<p>The catalogue was compiled from suitable data available in literature and from the data measured or created by the project "18NRM02 PRISM-eBT" (Primary standards and traceable measurement methods for X-ray emitting electronic brachytherapy devices; http://www.ebt-empir.eu/) of the European Metrology Programme for Innovation and Research (EMPIR).</p> <p>The main goal of the catalogue was to develop a set of harmonised reference X-ray qualities denoted as “eBT equivalent” that would be established for in-laboratory activities by the X-ray tubes usually available for calibration in calibration laboratories, but the tube voltage and the filter are specifically selected to simulate the energy spectrum of the corresponding eBT radiation as closely as possible at the reference point. </p> <p>The catalogue contains the following spectra:</p> <p>1) X-ray spectrum for 50 kVp in 1 cm water depth obtained using Monte Carlo simulation.<br> 2) eBT-equivalent spectrum in 1 cm water depth calculated from 1) with SpekPy software.<br> 3) X-ray spectrum for 50 kVp in 1 cm water depth obtained using Monte Carlo simulation.<br> 4) X-ray fluence spectrum in air laterally at 50 cm distance measured by NIST presented in graphical form only.</p>
Catalogue of X-ray photon fluence spectra of electronic brachytherapy device INTRABEAM manufactured by ZEISS
<p>The catalogue was compiled from suitable data available in literature and from the data measured or created by the project "18NRM02 PRISM-eBT" (Primary standards and traceable measurement methods for X-ray emitting electronic brachytherapy devices; http://www.ebt-empir.eu/) of the European Metrology Programme for Innovation and Research (EMPIR).</p> <p>The main goal of the catalogue was to develop a set of harmonised reference X-ray qualities denoted as “eBT equivalent” that would be established for in-laboratory activities by the X-ray tubes usually available for calibration in calibration laboratories, but the tube voltage and the filter are specifically selected to simulate the energy spectrum of the corresponding eBT radiation as closely as possible at the reference point. </p> <p>The catalogue contains the following spectra:</p> <p>1) X-ray spectra in 1 cm water depth obtained using full Monte Carlo simulation of the eBT device. One spectrum for bare needle and one spectrum with 4 cm applicator.<br> 2) eBT-equivalent spectra in 1 cm water depth realized at Czech Metrology Insitute.<br> 3) X-ray spectra in 1 cm water depth obtained from Monte Carlo calculation using spectra at device surface (0 cm air thickness) calculated from measured spectra presented in another sheets.<br> 4) eBT-equivalent spectra in 1 cm water depth calculated from 3) with SpekPy software."<br> 5) Measured spectra in air at 15 cm distance, bare and two applicators.<br> 6) X-ray spectra at device surface (0 cm air thickness) that were analytically recalculated from 5).<br> 7) Measured spectra in air at 70 cm distance, bare, for various angles.<br> 8) X-ray spectrum at device surface (0 cm air thickness) for 0° that was analytically recalculated from 7).<br> 9) Measured spectra in air at 70 cm distance, 3.5 cm applicator, for various angles.<br> 10) X-ray spectrum at device surface (0 cm air thickness) for 0° that was analytically recalculated from 9).</p>
Catalogue of X-ray photon fluence spectra of electronic brachytherapy device ioRT-50 manufactured by WOLF-Medizintechnik GmbH
<p>The catalogue was compiled from suitable data available in literature and from the data measured or created by the project "18NRM02 PRISM-eBT" (Primary standards and traceable measurement methods for X-ray emitting electronic brachytherapy devices; http://www.ebt-empir.eu/) of the European Metrology Programme for Innovation and Research (EMPIR).</p> <p>The main goal of the catalogue was to develop a set of harmonised reference X-ray qualities denoted as “eBT equivalent” that would be established for in-laboratory activities by the X-ray tubes usually available for calibration in calibration laboratories, but the tube voltage and the filter are specifically selected to simulate the energy spectrum of the corresponding eBT radiation as closely as possible at the reference point. </p> <p>The catalogue contains the following spectra:</p> <p>1) X-ray spectra for 35 kVp, 50 kVp and 70 kVp in air at 100 cm distance calculated with SpekCalc software.<br> 2) eBT-equivalent spectra in air at 100 cm source-to-detector distance calculated from 2) with SpekPy software.<br> 3) X-ray spectra for 35 kVp, 50 kVp and 70 kVp at device entrance window (0 cm air thickness) that were analytically recalculated from 1).<br> 4) X-ray spectra for 35 kVp, 50 kVp and 70 kVp in 1 cm water depth obtained using Monte Carlo calculation from 3).<br> 5) eBT-equivalent spectra at 1 cm water depth calculated from 4) with SpekPy software.</p>
Double inverse nanotapers for efficient light coupling to integrated photonic devices - Open Data
<p>Available data for the manuscript "Double inverse nanotapers for efficient light coupling to integrated photonic devices"</p>
Catalogue of X-ray photon fluence spectra of electronic brachytherapy device Esteya manufactured by Elekta
<p>The catalogue was compiled from suitable data available in literature and from the data measured or created by the project "18NRM02 PRISM-eBT" (Primary standards and traceable measurement methods for X-ray emitting electronic brachytherapy devices; http://www.ebt-empir.eu/) of the European Metrology Programme for Innovation and Research (EMPIR).</p> <p>The main goal of the catalogue was to develop a set of harmonised reference X-ray qualities denoted as “eBT equivalent” that would be established for in-laboratory activities by the X-ray tubes usually available for calibration in calibration laboratories, but the tube voltage and the filter are specifically selected to simulate the energy spectrum of the corresponding eBT radiation as closely as possible at the reference point. </p> <p>The catalogue contains the following spectra:</p> <p>1) Measured spectrum in air, 100 cm source-to-detector distance<br> 2) Measured spectrum in air, 150 cm source-to-detector distance<br> 3) eBT-equivalent spectrum in air, 150 cm source-to-detector distance, calculated by SpekCalc software<br> 4) Intermediate results for eBT-equivalent spectrum in air, 150 cm source-to-detector distance, realized at VSL"</p>
Single photon induced instabilities in a cavity electromechanical device
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