26 Oct 202305:00 pm
For the first time, experimental physicists from the Würzburg-Dresden Cluster of Excellence ct.qmat have demonstrated a new quantum effect aptly named the “spinaron.” This revelation challenges the long-held Kondo effect – a theoretical concept which has been considered the standard model for the interaction of magnetic materials with metals since the 1980s. These groundbreaking findings were published in the esteemed journal Nature Physics.
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07 Sept 2023
A team of five, headed by quantum physicist Professor Ronny Thomale of the Cluster of Excellence ct.qmat based at two universities in Würzburg and Dresden, secured second place in the international IBM Quantum Open Science Prize. The research group devised an algorithm enabling IBM’s 16-qubit quantum chip to be trained to outperform conventional computing capabilities.
07 Oct 2022
With 2.5 million euros from the European Research Council, Professor Vladimir Dyakonov will be able to pursue the development of a novel quantum sensor: The physicist was awarded an ERC Advanced Grant.
30 May 2022
A Dresden research team led by solid-state physicist Dr. Axel Lubk has succeeded in imaging the magnetic field of tiny magnetic nanovortices – called skyrmions – in three dimensions with a resolution of seven millionths of a millimeter. This is the first time ever that this has been achieved.
05 Nov 2021
An international research team from the Cluster of Excellence ct.qmat has demonstrated a completely novel state of matter in a metal. It is created by the combination of four electrons – until now, only electron pairs were known. The results have been published in the journal Nature Physics.
13 Apr 2021
Extremely sensitive quantum sensors have great potential to revolutionize medical imaging, navigation and information technology. An international researcher team led by scientists from the Cluster of Excellence ct.qmat has made a breakthrough that could shorten the path to this goal greatly.
02 Mar 2020
The Dyakonov group observed spin centers for the first time experimentally in 2D-materials. As decribed in Nature Materials, they have potential as possible roomtemperature qbits.
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