Faculty of Electrical Engineering

Research and scientific profile

Research activity areas
  • RARE – Earth Doped Glasses and Optical Fibers for ASE and Fiber Lasers and Sensors:
    • design and fabrication silica optical fiber preforms co-doped with rare-earth – MCVD
    • special, soft glass optical fibers, rare – earth – co-doped
    • glasses and glass-ceramics materials co-doped with rare-earth
    • luminescent polymeric fibers
    • luminescence measurement and analysis UV – 3 µm
    • bioactive glasses and fibers
  • Inteligent Lighting Systems:
    • design spectrally tunable LED sources
    • daylighting
    • light-optical systems
  • Immunity of electrical and electronic equipment to surges and ESD
  • Protective characteristics of interference protection devices and systems
  • Emission of electromagnetic disturbances from electrical and electronic devices
  • Measurements of the emission of electromagnetic field sources in the environment
  • Simulation studies of lightning threats in electronic systems
  • Selection of solutions for lightning and surge protection systems
  • Voltage and current surge strength testing of electrical and electronic devices
  • Research on the effectiveness of surge protection devices and systems for limiting surges
  • Audits in the field of lightning and surge protection
  • Damage expertise’s caused by overvoltage and lightning discharges
  • Simulations of lightning hazard of electronic devices and systems (theoretical and experimental)
  • Solutions for lightning protection systems of building objects and overvoltage protection
  • Measurements of electromagnetic fields and protection of electronic devices against their impact
  • Research in the field of electromagnetic compatibility
  • Susceptibility of WLAN, WPAN, LPWAN to inter- and intra-network interference
Examples of research topics
  • Development of glass technology and optical fibers co-doped with rare earth ions and analysis of their luminescent properties. Analysis of the influence of active dopant concentrations and the refractive index profile in terms of obtaining effective donor-acceptor energy transfer and, as a result, enhanced spontaneous emission
  • Analysis of the possibility of developing thin-film waveguide, luminescent and sensor structures obtained by applying from a solution as well as vapor deposition. Development of technology for the production of cylindrical and planar luminescent polymer optical fiber structures doped with lanthanide compounds and organic dyes
  • Development of light-optical systems (including in 3D printing technology) for tunable semiconductor lighting systems; including power supply systems, control and measurement of electro-optical parameters
  • Development of methods for analyzing the impact of radiation from artificial sources and their application on energy efficiency as well as circadian, photometric and photobiological parameters
  • Development of systems for the analysis of solar radiation and the day and night sky, including the assessment of light pollution
  • Development of methods for optimizing solar radiation gain in passive systems, absorbers, photovoltaic and photothermal systems
  • Analysis of the application properties of multispectral LED sources in qualitative research
  • Development of dedicated spectral distributions of semiconductor illuminators for special applications
  • Analysis of the possibility of using functionalized photonic materials as converters of optical radiation also in sensor applications
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