KNAW

Organisation

Casimir Research School

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Current research

(the most recent research is at the top)
Collaboration Visualization of charge transport through single molecules
Secretariat Single-molecule studies of soft matter
Secretariat Connecting Jamming and Rheology
Secretariat Dynamic Complex Systems
Secretariat Quantum cascade lasers as THz local oscillators
Secretariat Universe physics: theory and instrumentation
Secretariat Quantum CNOT gate in a semiconductor photonic network
Secretariat Development and study of one dimensional semiconducting nanowires and carbon nanotubes
Secretariat Realization of graphene nanostructures with application to spin qubits
Secretariat Manipulation of spin states in semiconductor quantum dots for quantum computing
Secretariat Realization of elements and circuits for quantum computing by means of superconducting tunnel junctions
Secretariat Dynamics of electron and hole spins in a quantum dot
Secretariat Quantum Information and quantum optics
Secretariat Quantum Matter and Functional Materials
Secretariat Nonequilibrium physics of superconducting resonators
Secretariat Single-molecule transport
Secretariat Quantum NEMS (Nano-electro-mechanical systems)
Secretariat Surface plasmon polaritons at increasingly higher frequency, where they become "less photonic and more electronic"
Secretariat Surface plasmon polaritons
Secretariat Photonic Crystal Tunable Elements for Merging Photonics & Nanoelectronics
Secretariat Coherent superconducting tunneling with nitride-based materials
Secretariat 3D imaging by Magnetic Resonance Force Microscopy al ultra low temperatures
Secretariat Subsurface imaging by Ultrasound Force Microscopy with very small high frequency cantilevers
Secretariat Theory of quantum pumping in solid-state nanostructures
Secretariat Theory of ultrafast magnetization switching
Secretariat Single-Molecule Biophysics
Secretariat Bacterial adaptation in microstructures
Secretariat Development of tweezing techniques inside living cells
Secretariat Passage of RNA and DNA through tiny holes: nanopores and nucleic acid structure
Secretariat Single-molecule force spectroscopy and fluorescence of RNA-protein interactions (incl . in SARS virus and proteins )
Secretariat Single-molecule force spectroscopy and fluorescence studies of excess coiling and twist in DNA replication and transcription

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