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IPAS Optics & Photonics Showcase and Pizza Night

Are you looking for a Summer, Honours or Masters Project?
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IPAS Novel Photoswitchable Single Peptide leads the way to multi-modal bio-inspired nanodevices

The understanding of structural dynamic properties of proteins is limited.
IPAS Novel Quantum Battery Charging featured in Physical Review Applied

Quantum batteries harness the unique properties of quantum mechanics to enhance energy storage compared to conventional batteries.
[Read more about IPAS Novel Quantum Battery Charging featured in Physical Review Applied]
IPAS High Resolution Spectroscopy selected as Editors' Suggestion

ÌýCongratulations to IPAS PhD studentÌýFaisal KarimÌýon his first publication which was selected as an Editor Suggestion.Ìý
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Cryoclock - Finalist SA Science Excellence and Innovation Award

Congratulations for being selected as one of three finalists in the "Innovator of the Year" category. As part of the 2020 SA Science Excellence and Innovation Award, the innovation is a new category for businesses applying new ways of thinking to solve emerging challenges.
[Read more about Cryoclock - Finalist SA Science Excellence and Innovation Award]
IPAS External Newsletter

Keep up to date all IPAS scientificÌýexcellence and research breakthroughs. Click here for the latest .
IPAS Cryoclock leading the SA Photonics Roadmap

IPAS start-up Cryoclock is proudly part of the fast- growing photonics industry which contributes $4.3bn to the ÐÓ°ÉÖ±²¥n economy. SA output is $412m, and with 1174 employees generates $117,500/employee, which is just under national average for the industry.
[Read more about IPAS Cryoclock leading the SA Photonics Roadmap]
IPAS/CNBP Novel Plasmonic Tape featured in ACS Applied Nano Materials

Flexible plasmonics has arisen from the realization of active optical metamaterials on nonplanar, stretchable, and/or flexible substrates for sensing application.
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IPAS/CNBP Resist-free Nanoimprint technique featured in Applied Materials Today

Nanostructure patterning on optical fibers enables miniaturized optrodes for photonic and plasmonic applications.
[Read more about IPAS/CNBP Resist-free Nanoimprint technique featured in Applied Materials Today]
IPAS Fiber-Fabry-Perot featured in IEEE Photonics Technology Letters

Quantum optics experiments frequently require the separation of weak quantum signals from strong classical fields, where it is necessary to exploit the minute frequency difference itself as the only means for signal separation.
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