Research center
UPV-EHU
Main researcher
Description
The group of "Laser Physics and Photonic Materials" (LASES) of the UPV / EHU-CFM is specialized in the investigation of light-matter interaction processes in new photonic materials with potential applications in the fields of optoelectronics (optical amplifiers, lasers, light converters, laser cooling ...) and biome
Research center
Tecnalia
Main researcher
Research center
UPV-EHU
Main researcher
Description
The "Applied Photonics Bilbao", started his research activities on Polymer Optical Fibres and optical sensors in 1993.
Research center
Materials Physics Center
Main researcher
Description
The group's research is focused on spectroscopy and photonic applications of nano-scale functional units, including semiconductor quantum dots and quantum wires, metal nanoparticles and nanoantennas and organic/inorganic nano-hybrid systems.
Research center
Donostia International Physics Center
Main researcher
Description
We focus on two separate but related phenomena in the field of light-matter interactions.
Research center
Materials Physics Center
Main researcher
Description
Colloidal Systems Chemistry group, led by Marek Grzelczak, started research activities at Donostia International Physics Center from September 2017 to February 2020, currently, we run our research activities in Centro de Fisica de Materiales.
Research center
UPV-EHU
Main researcher
Description
The research of Molecular Spectroscopy group is focused on the search, development and characterization of new photoactive systems for optical and biomedical applications.
The main lines are:
Research center
Materials Physics Center
Main researcher
Description
The Theory of Nanophoptonics Group studies the interaction of light and matter at the nanoscale.
Research center
Materials Physics Center
Main researcher
Description
The Quantum Nanophotonics Laboratory is led by Ikerbasque Research Professor Gabriel Molina-Terriza. We are a team of scientists endeavoruing to unveil the physics of the interactions of quantum light and matter at the nanoscale.