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Leibniz Institute of Photonic Technology
Photonics For Life
About Leibniz Institute of Photonic Technology
PHOTONICS FOR LIFE Photonics, the key light-based technology of the 21st century, is at the center of the Leibniz Institute of Photonic Technology’s (IPHT) research activities. In line with its motto "Photonics for Life", the scientists at IPHT are investigating photonic and biophotonic processes and systems to address issues in the fields of medicine and the life and environmental sciences. FROM IDEAS TO INSTRUMENTS The insights gained from research are converted into application-oriented procedures, instrumental concepts, and laboratory samples at IPHT. With this orientation, the institute contributes to the solution of pressing issues in our society, such as in health, energy, and the environment. IPHT is involved in research and development at the interface of three focal points in research: fiber optics, photonic detection, and biophotonics. Biophotonics serves as the link to all research activities at the institute. Together with the two research areas fiber optics and photonic detection, new photonic processes are being developed and transferred into innovative application-oriented systems. TECHNOLOGICAL BASIS IPHT possesses the know-how and an outstanding technological basis in the areas of system technology, fiber technology, photonic detection, and micro/nanotechnology. Together with outstanding technical equipment and infrastructure, IPHT possesses a state-of-the-art, closed technology chain. In addition to the constant expansion of IPHT’s technological potential, the research aims at reaching new levels in photonic and biophotonic solutions with regard to resolution, sensitivity, specificity, speed, and automation.
Verified activity
Signals from Leibniz Institute of Photonic Technology
7 published signals
Research & Knowledge
Leibniz Institute of Photonic Technology scientific director Juergen Popp highlighted how advances in Raman instrumentation, spectroscopy, and AI are opening new possibilities for translating molecular information into biomedical and clinical contexts.
Reported by Leibniz Institute of Photonic Technology
Research & Knowledge
Leibniz Institute of Photonic Technology researcher Timea Frosch demonstrated how Raman spectroscopy can uncover stage-dependent mechanisms of antimalarial drugs.
Reported by Leibniz Institute of Photonic Technology
Research & Knowledge
Leibniz Institute of Photonic Technology researcher Thomas Bocklitz focused on new approaches in photonic data science alongside further work on nanoscale Raman spectroscopy, SERS substrates, coherent Raman imaging, AI-assisted spectral analysis, and FAIR spectroscopic data.
Reported by Leibniz Institute of Photonic Technology