Optimizing the information content of coherent light
Allard P. Mosk Utrecht University Random scattering of light, which takes place in paper, paint and biological tissue is an obstacle to imaging and focusing of light and thus hampers […]
Allard P. Mosk Utrecht University Random scattering of light, which takes place in paper, paint and biological tissue is an obstacle to imaging and focusing of light and thus hampers […]
Alexander Holleitner Technical University of Munich Heterostructures made from two-dimensional (2D) transition-metal dichalcogenides exhibit a very large light-matter interaction , and they are ideal platforms to explore excitonic phenomena ranging […]
Biplab Sanyal Uppsala University Two-dimensional (2D) materials have gained a dominating position in the world of quantum materials due to their high potential for advanced applications in flexible electronics, optoelectronics, […]
Yusuf Karlı University of Cambridge Quantum networks promise fundamentally new ways to communicate and process information by harnessing the laws of quantum mechanics. Semiconductor quantum dots offer a practical and […]
Carlos A. Dorao Norwegian University of Science and Technology Manipulating micro- and nanoscale particles is fundamentally challenging because, at small scales, conventional forces behave very differently. Particles are dominated by […]
Murat Tuğrul Humboldt-Universität zu Berlin A central challenge in evolutionary biology is predicting how microscopic processes within a cell determine the macroscopic success of a population. While classical population genetics […]
Alexander Von Appen MPI of Molecular Cell Biology and Genetics The nucleus, the largest organelle in human cells, plays a crucial role in protecting, organizing, and regulating our genome. Despite […]
Sidi A. Bencherif University of Rouen Normandy Northeastern University Across cell therapy, regenerative medicine, and immunoengineering, there is a need for advanced three-dimensional (3D) scaffolds that support cells, modulate their […]