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J.H. Hoogenraad and L.D. Noordam, Rydberg atoms in far-infrared radiation fields. I. Dipole matrix elements of H, Li, and Rb, Phys. Rev. A 57, 4533-4545 (1998)
A.J. Lock, J.J. Gilijamse, S. Woutersen and H.J. Bakker, Vibrational relaxation and coupling of two OH-stretch oscillators with an intramolecular hydrogen-bond, J. Chem. Phys. 120, 2351-2358 (2004)
Abstract In the 19th century the world was revolutionized because we could transform energy into useful work. The 21st century is revolutionized due to our ability to transform information (or data) into useful tools. Driven …
B.E. Vos, L.C. Liebrand, M. Vahabi, A. Biebricher, G.J.L. Wuite, E.J.G. Peterman, N.A. Kurniawan, F.C. MacKintosh and G.H. Koenderink, Programming the mechanics of cohesive fiber networks by compression, Soft Matter 13, (47), 8886-8893 (2017)
The research field of nanophotonics, the science and application of light at the nanoscale, has seen a rapid growth in the last years, with AMOLF researchers among the pioneers. In a recent article in Science, …
Researchers from AMOLF's 3D-Photovoltaics group have successfully used an atomic force microscope to electrochemically print at the nanoscale. This technique can print structures for a new generation of solar cells on chips. The researchers published …
AMOLF researchers Lukas Helmbrecht and Wim Noorduin have developed a reactive ink that can be painted on an equally reactive canvas. The ink reacts with the material on the canvas to become a semiconductor that …
D. Mikulik, M. Ricci, G. Tütüncüoglu, F. Matteini, J. Vukajlovic, N. Vulic, E. Alarcón-Lladó and A. Fontcuberta i Morral, Conductive-probe atomic force microscopy as a characterization tool for nanowire-based solar cells, Nano Energy 41, 566-572 (2017)