If you're an expert in organic molecules, thin film fabrication and/or optics and are looking to bring cutting-edge technology to the market - Please apply and join our team at the Humboldt Centre for Nano- and Biophotonics! jobportal.uni-koeln.de/bewerben/2186
Andreas Mischok
@andreasphysics.bsky.social
Physicist at University of Cologne. Working on strong light matter coupling and its applications in organic electronics.
Join my inaugural lecture on June 19 at 4.40 pm, live in Dresden and on Youtube. For a teaser on our work, watch the introductory video: 👉https://youtu.be/JflrxF_H1N0
Organic Semiconductors for a Brighter Future 🔆 | Introducing Caroline Murawski
YouTube video by TU Dresden
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Organic Semiconductors for a Brighter Future: 🔆 Using precise light-based neural stimulation @murawskilab.bsky.social provides new insights into brain function & the development of therapies for neurological diseases. Learn more in her Inaugural Lecture on June 19 ➡️ tu-dresden.de/tu-dresden/p...
You can find an overview of our recent work on polaritons for devices, with a focus on high colour brilliance in OLED displays in the current issue of Information Display: lnkd.in/exmDV-uT
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We are extremely proud to have been awarded an EXIST-Forschungstransfer grant to develop new optical filters based on #organic #polaritons towards market readiness. The new filters will enable new optical applications with higher fields of view, higher range and lower noise in many fields.
Congratulations to @andreasphysics.bsky.social and @thegatherlab.bsky.social for winning 1.1 Mio € start-up funding for their new filter technology! 💐🎆
Verstärkung gesucht in meiner Gruppe an der @tudresden.bsky.social auf zwei unbefristeten Stellen: 1️⃣ 𝗣𝗿𝗼𝗺𝗼𝘃𝗶𝗲𝗿𝘁𝗲:𝗿 𝘄𝗶𝘀𝘀𝗲𝗻𝘀𝗰𝗵𝗮𝗳𝘁𝗹𝗶𝗰𝗵𝗲:𝗿 𝗠𝗶𝘁𝗮𝗿𝗯𝗲𝗶𝘁𝗲𝗿:𝗶𝗻 (je nach Qualifikation E13/E14 TV-L) www.verw.tu-dresden.de/StellAus/ste... 2️⃣ 𝗟𝗮𝗯𝗼𝗿𝗶𝗻𝗴𝗲𝗻𝗶𝗲𝘂𝗿:𝗶𝗻 (E11 TV-L) www.verw.tu-dresden.de/StellAus/ste...
Stellenausschreibung ID 12058
verw.tu-dresden.de
// Interview mit Erfindern der @unicologne.bsky.social // @thegatherlab.bsky.social und @andreasphysics.bsky.social stellen in einem PROvendis-Interview ein von ihnen entwickeltes Verfahren vor und erläutern die nächsten Schritte auf dem Weg zur Marktreife. #transfer ▶️ provendis.info/aktuelles/be...
Many thanks to all for this great collaboration pushing further the limits of microlasers - this time for DNA sensing. In particular to former #HCNB postdoc @sorayacaixeiro.bsky.social now at UBath and our friends from @kathlab.bsky.social in organic chemistry @chemunicologne.bsky.social.
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🧬🔬New paper online: Nucleic acid sensing using DNA-functionalized whispering gallery mode microlasers! Great collaboration with @thegatherlab.bsky.social @sorayacaixeiro @schubertlab.bsky.social @chemunicologne.bsky.social 🧪 #DNASensing #microlasers pubs.acs.org/doi/full/10....
Exciting PhD position available in my group on "Infrared nanocrystal LEDs for biomedical sensing". The position is part of a research training group, which provides high-class, interdisciplinary training and lots of opportunities for collaboration.👇 lnkd.in/ebfkccMS Apply before February 14th.
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Great work lead by Florian showing record organic #polariton lasing thresholds of only ~100fJ ! www.nature.com/articles/s41...
Schlieren texture and topography induced confinement in an organic exciton-polariton laser - Nature Communications
Organic exciton-polaritons represent an attractive platform for quantum devices. Here, authors show how introducing Schlieren texturing and a rough intra-cavity topography in a liquid crystalline poly...
nature.com
Schlieren textures and topography make organic polariton lasers better! To the point where lasing is achieved with simple metallic mirrors for the first time. Great work by Florian Le Roux, @andreasphysics.bsky.social and Francisco Tenopala Carmona. Check out our Nature Comms paper rdcu.be/d6GXz
Hello Bluesky! 👋 Here, I'll post news from our lab at TU Dresden, faculty of electrical and computer engineering. We develop flexible, micropatterned organic LEDs and photodiodes for use in optogenetics and fluorescence imaging. I'm open for scientific exchange. 👩🔬
Thin-film polariton filters for better displays, sensors, and optical imaging? www.laserfocusworld.com/optics/artic...
Thin-film polariton filters for better displays, sensors, and optical imaging?
By tapping into the quantum mechanical principle of strong light-matter coupling, researchers manage to outmaneuver the problem of angular dependence within optical systems.
laserfocusworld.com
‘Strong’ filters – Innovative technology for better displays and optical sensors. Press release Uni Köln: uni-koeln.de/en/universit...
‘Strong’ filters – Innovative technology for better displays and optical sensors
New research has shown how the quantum mechanical principle of strong coupling opens unrivalled possibilities for designing optical filters: So-called ‘polariton filters’ break new ground in imaging. ...
uni-koeln.de
#Polaritons enable high performance angle-independent optical filters. Immensely enjoyed this collaboration between @thegatherlab.bsky.social, the Vandewal group at UHasselt and University of St Andrews rdcu.be/d2hUo
Breaking the angular dispersion limit in thin film optics by ultra-strong light-matter coupling
Nature Communications - Thin film interference is integral to modern photonics; however, it inevitably leads to an undesired change of spectral characteristics with angle. Here, the authors...
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📢Just published: Breaking the angular dispersion limit in thin-film optics by ultra-strong light-matter coupling rdcu.be/d2hUo. This may be our most impactful work so far, challenging a fundamental limit that has constrained optical design in the past. @andreasphysics.bsky.social