Who wants to combine spin physics, anyons, machine learning, and quantum computing as part of the excellence cluster @cui_unihh and the ERC project QUANTWIST in @unihh Hamburg, Germany?
We have a new call for a Postdoc out https://t.co/anZqLyZFVG
👋Welcome, @MIT students! As part of a collaboration between PIER and the @MIT, three students have started their internship in the research groups of Eric Hill @Chemie_UHH , Jochen Küpper and @ThorePosske ! https://t.co/IA3cSeaiJE @desynews@unihh
Imagine you predict something as a young scientist, and 50 years later it becomes reality.. Here it is, the Machida-Shibata state or: the smallest example of proximity-induced superconductivity. Happy to have helped. https://t.co/H3kB37EmI4
@UHHMIN
@ERC_Research Only few weeks between feedback for 2022 submissions and 2023 deadline pose severe problems.
Drop of 28% in 2022 Starting Grant applications because of this (4 wks. incl. Xmas).
Impossible to address critique of referees reasonably, promoting superficially altered projects.
This morning, the ERC’s Work Programme for 2023 was adopted.
Below are the 📅dates for the grant competitions 👇.
What's new, key figures, important deadlines 👉 https://t.co/V0ctTZqbCl
#ERC sent my results of Starting Grant application 2021 on 20-12-2021. Deadline for improved proposal was 13-01-2022.
I did not make it.
Now found out others as well (28% drop in applications https://t.co/4BsjA8SXpv ).
Same problem ahead this fall.
Interested in comments
We describe "Vortex Majorana braiding in a finite time" by moving a superconducting vortex close to the center of three surrounding vortices. The finite-time quantum gate is robust against variations in material parameters. https://t.co/abQG4G8mAH @PhysRevResearch@unihh
@PhysRevResearch@PhysRevResearch, some text for better understanding:
We describe "Vortex Majorana braiding in a finite time" by moving a superconducting vortex close to the center of three surrounding vortices. The finite-time quantum gate is robust against variations in material parameters.
Rechnen mit Quantenkorkenziehern: Physiker @unihh haben herausgefunden, wie die Kapazität zukünftiger #Datenspeicher in Quantencomputern erhöht werden kann: https://t.co/tijqmFTqoL