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Optical quantum technologies in Berlin – From answering big questions of modern science in space to the prospects of a commercial “quantum boom”
/en/media-center/media-review/optical-quantum-technologies-in-berlin-from-answering-big-questions-of-modern-science-in-space-to-the-prospects-of-a-commercial-quantum-boom
Optical quantum technologies in Berlin – From answering big questions of modern science in space to the prospects of a commercial “quantum boom” Dr. Markus KrutzikHU Berlin, Team lead quantum…
Characterization and reliability of GaN-based UV-B LEDs
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Characterization and reliability of GaN-based UV-B LEDs Carlo De Santi Universität Padua
Failure mechanisms in high-power diode lasers: Wide-vs-narrow band gap materials
/en/media-center/media-review/failure-mechanisms-in-high-power-diode-lasers-wide-vs-narrow-band-gap-materials
Failure mechanisms in high-power diode lasers: Wide-vs-narrow band gap materials Dr. Martin HempelPaul-Drude-Institut, Berlin
Informationen zur Forschungsfabrik Mikroelektronik Deutschland am FBH
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Informationen zur Forschungsfabrik Mikroelektronik Deutschland am FBH Günther TränkleFerdinand-Braun-Institut
Low Temperature Plasmas
/en/research/research-news/low-temperature-plasmas
Low Temperature Plasmas Prof. Dr.-Ing. habil. Thomas MussenbrockBTU Cottbus-Senftenberg
Fraunhofer Group and Leibniz Association to collaborate on future technology timeframe
/en/media-center/media-review/fraunhofer-group-and-leibniz-association-to-collaborate-on-future-technology-timeframe
To reinforce the position of Europe’s semiconductor and electronics industry within global competition, eleven institutes within the Fraunhofer Group for Microelectronics have, together with two…
Forschungsfabrik Mikroelektronik Deutschland eröffnet
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Neues Investitionsprogramm in Höhe von rund 400 Millionen Euro für die Mikroelektronik-Forschung.
Diodenlaser in der Materialbearbeitung - Systeme, Verfahren, Anwendungen
/en/events/diodenlaser-in-der-materialbearbeitung-systeme-verfahren-anwendungen
FBH lecture "Breitstreifenlaser hoher Strahldichte für inkohärentes und spektrales Multiplexing"
Single-ion microwave near-field quantum sensor
/en/research/research-news/single-ion-microwave-near-field-quantum-sensor
Single-ion microwave near-field quantum sensor Prof. Dr. Christian OspelkausUni Hannover, Institute of Quantum Optics
25 Jahre Forschungsverbund Berlin - schwieriger Neuanfang nach der Wende
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Der Forschungsverbund Berlin ist ein sonderbares Konstrukt: Unter seinem Dach vereint er acht Wissenschaftsinstitute, die unterschiedlicher nicht sein könnten – und kümmert sich um deren Verwaltung.…