معرفی
Timm Mörstedt is a Doctoral Student and Project Employee at Aalto University's Department of Applied Physics, working within the Centre of Excellence in Quantum Technology (QTF) and the Quantum Computing and Devices research group. His research focuses on advancing quantum computing technologies through innovations in quantum circuit refrigeration and qubit control systems.
- Doctoral Student, Centre of Excellence in Quantum Technology (QTF), Aalto University
- Project Employee, Department of Applied Physics
- Project Employee, Quantum Computing and Devices research group
- ORCID: https://orcid.org/0000-0001-9869-1329
Mörstedt's research centers on quantum thermodynamics applications for quantum computing. He investigates how quantum-circuit refrigerators can remove excitations from qubits, improve coherence times, and enable novel quantum heat engine implementations. His work bridges fundamental quantum physics with practical device engineering, addressing critical challenges in maintaining quantum states at operational temperatures. The research has significant implications for scaling quantum computers by improving qubit stability and control precision through thermal management techniques.
His publication record demonstrates consistent advancement in quantum refrigeration technologies, with a clear progression from fundamental demonstrations of quantum-circuit cooling to practical applications in qubit control systems. Recent work shows increasing sophistication in manipulating quantum states through combined microwave and refrigeration techniques, with multiple papers published in high-impact journals including Physical Review Research and Scientific Reports.
Mörstedt actively contributes to multiple major research initiatives funded by European and Finnish agencies. He is a key team member in ERC ConceptQ (2022-2027), developing novel superconducting quantum devices with enhanced anharmonicity, and BF_R2B_ProSQu (2024-2026), advancing quantum technology applications. His collaborative work extends across projects including SCAR (quantum-circuit refrigerator fabrication), Quantum Enhanced Microwave Backscatter Communications, and QUESS (quantum environment engineering), demonstrating broad engagement across the quantum technology landscape.
Working within Professor Mikko Möttönen's research group, Mörstedt collaborates with an international team of researchers across quantum physics, materials science, and engineering disciplines. His research fingerprint shows strong engagement in quantum dot physics (98%), electronic circuit material science (96%), quantum circuit engineering (78%), and qubit engineering (68%), reflecting the interdisciplinary nature of his contributions to quantum technology development.