Dynamical response of correlated quantum materials (DYNCOR)
Main funder
Funder's project number: 354735
Funds granted by main funder (€)
- 558 923,00
Funding program
Project timetable
Project start date: 01/09/2023
Project end date: 31/08/2027
Summary
The goal of \acro is a complete classification of the dynamical response of two-dimensional correlated electron systems, with a particular focus on superconductivity. Besides mere classification, we will also provide quantitative predictions for the microwave response of two-dimensional superconductors, taking into account orbital and spin degrees of freedom, various Hall effects and effects of disorder. Besides electromagnetic responses, we will study responses to magnonic excitations and effects due to coupling between spin and charge. We will pay special attention to the role of collective modes, either providing additional resonances, or being relevant in Raman processes. The results will be essential in characterizing the properties of van der Waals materials and in particular their use in high-speed electronics at low temperatures.
Principal Investigator
Other persons related to this project (JYU)
Primary responsible unit
Follow-up groups
Related publications and other outputs
- Nonreciprocal Josephson Linear Response (2024) Virtanen, Pauli; et al.; A1; OA
- Superconducting diode effect in diffusive superconductors and Josephson junctions with Rashba spin-orbit coupling (2024) Ilić, Stefan; et al.; A1
- Superconducting spintronic heat engine (2024) Levartoski de Araujo, Clodoaldo Irineu; et al.; A1; OA
- Reducing the frequency of the Higgs mode in a helical superconductor coupled to an LC circuit (2023) Lu, Yao; et al.; A1; OA