Research lines

  • Criogenic devices and superconductor-based systems: fault current limiters, photonic detectors, ...
  • Electrical, magnetic, optical and low temperature measurements of superconductors and other functional materials.
  • Fabrication, structuration, microscopy and characterization of thin films and other twodimensional functional materials.
  • High- and low-temperature superconductors. Magnetic, thermal, electrical and optical properties.
  • Ion exchange techniques in vitreous and crystal media to ellaborate optical devices and photonic chips (optical integration) for comunications, sensors, optical vortices, astronomy, ...
  • Low-dimensionality materials, nanostructured, inhomogeneous and disordered, and optical metamaterials (photonic crystals, ...)
  • Optical metrology using standard, holographic and electronic speckle (ESPI) interpherometry, for scientific, industrial and biomedical applications.
  • Quantum photonics based on optical fibers and optical guides and integrated devices for quantum information technology (quantum cryptography and computation). High and low temperature regime.
  • Quantum systems (materials and devices) based on advanced materials and/or photonics.
  • Techniques for electronic lithography (e-beam) and UV & Laser photolithography for nano and microstructured materials and photonic chips.