
k-lab.epfl.ch
Preview meta tags from the k-lab.epfl.ch website.
Linked Hostnames
22- 91 links towww.epfl.ch
- 6 links towww.nature.com
- 4 links toactu.epfl.ch
- 4 links toweb.archive.org
- 3 links toscience.sciencemag.org
- 3 links towww.science.org
- 2 links tojournals.aps.org
- 2 links tosti.epfl.ch
Thumbnail

Search Engine Appearance
https://k-lab.epfl.ch/
Laboratory of Photonic Integrated Circuits and Quantum Measurements
-
Bing
Laboratory of Photonic Integrated Circuits and Quantum Measurements
https://k-lab.epfl.ch/
-
DuckDuckGo

Laboratory of Photonic Integrated Circuits and Quantum Measurements
-
General Meta Tags
10- titleLaboratory of Photonics and Quantum Measurements ‐ EPFL
- charsetUTF-8
- viewportwidth=device-width, initial-scale=1
- application-nameName
- msapplication-tooltipTooltip
Open Graph Meta Tags
12- og:typewebsite
- og:site_nameEPFL
- og:titleLaboratory of Photonic Integrated Circuits and Quantum Measurements
- og:descriptionThe Laboratory of Photonic Integrated Circuits and Quantum Measurements works broadly defined, in the field of Cross-Quantum Technology, i.e. it uses quantum mechanical processes such as parametric frequency conversion or radiation pressure quantum effects in both emerging classical applications in technology, as well as fundamental quantum science and technology experiments. In our laboratory, we measure, simulate, design and fabricate such hybrid nanoscale quantum devices that are composed of superconducting resonators, nano- and micro-mechanical resonators, or integrated nonlinear photonic chips.
- og:urlhttps://www.epfl.ch/labs/k-lab/
Twitter Meta Tags
4- twitter:cardsummary_large_image
- twitter:titleLaboratory of Photonic Integrated Circuits and Quantum Measurements
- twitter:descriptionThe Laboratory of Photonic Integrated Circuits and Quantum Measurements works broadly defined, in the field of Cross-Quantum Technology, i.e. it uses quantum mechanical processes such as parametric frequency conversion or radiation pressure quantum effects in both emerging classical applications in technology, as well as fundamental quantum science and technology experiments. In our laboratory, we measure, simulate, design and fabricate such hybrid nanoscale quantum devices that are composed of superconducting resonators, nano- and micro-mechanical resonators, or integrated nonlinear photonic chips.
- twitter:imagehttps://www.epfl.ch/labs/k-lab/wp-content/uploads/2021/07/front_page.jpg
Link Tags
35- EditURIhttps://www.epfl.ch/labs/k-lab/xmlrpc.php?rsd
- alternatehttps://www.epfl.ch/labs/k-lab/feed/
- alternatehttps://www.epfl.ch/labs/k-lab/comments/feed/
- alternatehttps://www.epfl.ch/labs/k-lab/wp-json/wp/v2/pages/732
- alternatehttps://www.epfl.ch/labs/k-lab/wp-json/oembed/1.0/embed?url=https%3A%2F%2Fwww.epfl.ch%2Flabs%2Fk-lab%2F
Links
129- https://actu.epfl.ch/news/compact-comb-lights-the-way-for-next-gen-photoni-8
- https://actu.epfl.ch/news/ultra-broadband-photonic-chip-boosts-optical-sig-8
- https://actu.epfl.ch/news/ultrafast-photonic-integrated-pockels-laser-sets-5
- https://actu.epfl.ch/search/en/k-lab
- https://go.epfl.ch/privacy-policy