Paul Drude Institut Berlin
We are developing an innovative semiconductor wafer for micro-LEDprojection displays used in augmented-reality (AR) and virtual-reality (VR)applications. The technology originates from scientific research and hasalready demonstrated promising technical feasibility. Our next objective
We are developing an innovative semiconductor wafer for micro-LEDprojection displays used in augmented-reality (AR) and virtual-reality (VR)applications. The technology originates from scientific research and hasalready demonstrated promising technical feasibility. Our next objective
Paul Drude Institut Berlin
PDI is currently looking to strengthen its expertise in investigating the thermal properties of epitaxial thin films 2D materials heterostructures and devices. Materials of interest include wide- and ultra-wide-bandgap materials for power electronics (AlN BN diamond r-GeO₂ Ga₂O₃) 2D m
PDI is currently looking to strengthen its expertise in investigating the thermal properties of epitaxial thin films 2D materials heterostructures and devices. Materials of interest include wide- and ultra-wide-bandgap materials for power electronics (AlN BN diamond r-GeO₂ Ga₂O₃) 2D m
Paul Drude Institut Berlin
PDI has recently opened a new application laboratory for time-resolved cathodoluminescence (TRCL) spectroscopy which combines high spatial spectral and temporal resolution to investigate the dynamics of charge carriers in semiconductors with a particular focus on optimized deep ultrav
PDI has recently opened a new application laboratory for time-resolved cathodoluminescence (TRCL) spectroscopy which combines high spatial spectral and temporal resolution to investigate the dynamics of charge carriers in semiconductors with a particular focus on optimized deep ultrav