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Prof. Dr. Daniel Loss

Department of Physics
Profiles & Affiliations

Research Interests

Quantum Theory of Condensed Matter (Solid State Physics) with focus on quantum effects in low- dimensional many-body systems in and out-of-equilibrium which includes semiconducting and magnetic systems which show topological quantum effects. A substantial part of work is related to quantum in- formation processing–quantum computing and quantum technology in solid state systems with focus on spin qubits and related physics and quantum information aspects. The work of the group spans a wide range of topics, from very fundamental to applied, and extends from pure physics and maths to pure quantum computing. 

Keywords: Spin and charge effects in semiconducting and magnetic nanostructures; spin qubits, quan- tum dots, quantum gates, electron and hole semiconductors; decoherence; quantum computing; quan- tum memories; superconductivity; strongly interacting electrons, Luttinger liquids; nuclear spins and hyperfine interaction; topological quantum matter; Majorana and para-fermions, non-Abelian statistics; spin-atoms on surfaces and Shiba states physics; phase transitions in TMDCs; (F)QHE and boundary charge; driven Floquet systems; topological magnonics, skyrmions and skyrmion lattices; spin ladders and exotic spin phases; non-Fermi liquid behavior in strongly interacting systems; molecular magnets for quantum coherence and quantum computing