Thanks for coming all the way. Spread the News! Retweet, Like, Comment, Subscribe.
To paraphrase @fritz_aumayr: "This is the closest we have been to the Nobel Prize. For now ;-)"
We are very happy that our paper https://t.co/xEr5RJ7nLd has been marked as Editors' Suggestion by @PhysRevLett and is featured in @APSphysics https://t.co/RoVQZw8GmQ.
In this thread I try to explain our research using GIFs (1/7)
Superzeitlupe für Elektronen: Wenn geladene Teilchen eine Oberfläche durchschlagen, laufen in kürzester Zeit komplexe Prozesse ab. Einem Team der TU Wien gelang es, diese Phänomene erstmals zeitlich aufzulösen.
https://t.co/PNvhp5uK2G
In our most recent joint paper with @helsinkiuni & @La_UPM we demonstrate that nanocolumnar tungsten is indeed a promising option for a plasma facing materials in future fusion reactors due to a globally reduced sputtering.
#TUWien, @tuvienna, #Fusion https://t.co/UtkMZ6gkN6
1/n I am happy to announce that our paper on "Atomic spin-controlled non-reciprocal Raman amplification of fibre-guided light" with me as first author has been published in @NaturePhotonics:
https://t.co/iVsqHgCqy8
⬇️More below⬇️
TUW_Wissenschaftler_innen haben den Einfluss der Rauigkeit einer Oberfläche beim #Sputtering untersucht. Mögliche Anwendungsgebiete: Fusionsforschung, astrophysikalische Studien, neue Modellierungsverfahren in der Industrie. Mehr dazu: https://t.co/Q5oe3oauVi #Sputter
In our recent work, we @TUvienna
explain, how the sputtering yield depends on the surface roughness (important for #Fusion, #Astrophysics)
https://t.co/N4pD6VQ9AQ
Combination of in-situ ion beam analysis and thermal desorption spectroscopy for studying deuterium implanted in tungsten https://t.co/vYreyeqyC7 via @IOPscience
Just out – by peeling graphite layer by layer we uncover how ions recapture their electrons when moving through solid material.
#TUWien@tuvienna
https://t.co/1uSWSc0oRy
Ever wondered what happens to a highly charged ion inside a material? By peeling graphite layer by layer we unravel how ions neutralise when going through a material.
@CommsPhys@tuvienna
https://t.co/m2hDJq7ZQg
This study presents methods to create and analyze mineral powder pellets for ion irradiation experiments relevant for rocky planetary bodies including the Moon and Mercury. https://t.co/zsf6aSwD9K
Experimental Insights Into Space Weathering of Phobos: Laboratory Investigation of Sputtering by Atomic and Molecular Planetary Ions https://t.co/pplZ745kK8 Oxygen ions from the atmosphere of Mars dominate erosion of the surface of Phobos when the planet shadows the solar wind