Nano-FTIR spectroscopy of individual Au-nanoparticle-on-quartz cavities reveals two reproducible phonon-polaritonic antenna modes with simulated ultrasmall volumes and high Q factors.
J.; Aizpurua, J.; Mikkelsen, M
3 Pith papers cite this work, alongside 797 external citations. Polarity classification is still indexing.
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Multi-step dewetting creates disordered many-particle plasmonic nanoclusters that deliver SERS enhancement near 4e8 with ~10% RSD at wafer scale by statistical averaging of disorder.
Reports experimental generation of remote Bell entanglement between two giant atoms with fidelity 0.89 using driven-dissipative stabilization and in-situ frequency tuning.
citing papers explorer
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Probing individual phonon-polaritonic nanoparticle-on-mirror cavities by infrared nanospectroscopy
Nano-FTIR spectroscopy of individual Au-nanoparticle-on-quartz cavities reveals two reproducible phonon-polaritonic antenna modes with simulated ultrasmall volumes and high Q factors.
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Engineering Disordered Many-particle Plasmonic Nanoclusters for Wafer-scale Uniform and Giant Electromagnetic Field Enhancement
Multi-step dewetting creates disordered many-particle plasmonic nanoclusters that deliver SERS enhancement near 4e8 with ~10% RSD at wafer scale by statistical averaging of disorder.
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Driven-dissipative entanglement of distant giant atoms
Reports experimental generation of remote Bell entanglement between two giant atoms with fidelity 0.89 using driven-dissipative stabilization and in-situ frequency tuning.