Colloidal plasmonic materials are increasingly used in biosensing and catalysis, which has sparked the use of super-resolution localization microscopy to visualize processes at the interface of the particles. We quantify the effect of particle-emitter coupling on super-resolution localization accuracy by simulating the point spread function (PSF) of single emitters near a plasmonic nanoparticle. Using a computationally inexpensive boundary element method, we investigate a broad range of conditions allowing us to compare the simulated localization accuracy to reported experimental results. We identify regimes where the PSF is not Gaussian anymore, resulting in large mislocalizations due to the appearance of multilobed PSFs. Such exotic PSFs ...
Single-Molecule Localization Microscopy is an optical imaging paradigm which provides computational ...
We demonstrate the all-optical reconstruction of gold nanoparticle geometry using super-resolution m...
Plasmonic particle arrays have remarkable optical properties originating from their collective behav...
Colloidal plasmonic materials are increasingly used in biosensing and catalysis, which has sparked t...
Colloidal plasmonic materials are increasingly used in biosensing and catalysis, which has sparked t...
Colloidal plasmonic materials are increasingly used in biosensing and catalysis, which has sparked t...
Colloidal plasmonic materials are increasingly used in biosensing and catalysis, which has sparked t...
The high sensitivity of localized surface plasmon resonance sensors to the local refractive index al...
The high sensitivity of localized surface plasmon resonance sensors to the local refractive index al...
Plasmonic nano-objects have shown great potential in enhancing sensing, energy transfer and computin...
Over the last decade, two fields have dominated the attention of sub-diffraction photonics research:...
Plasmonic nano-objects have shown great potential in enhancing sensing, energy transfer and computin...
We demonstrate the all-optical reconstruction of gold nanoparticle geometry using super-resolution m...
We demonstrate the all-optical reconstruction of gold nanoparticle geometry using super-resolution m...
We demonstrate the all-optical reconstruction of gold nanoparticle geometry using super-resolution m...
Single-Molecule Localization Microscopy is an optical imaging paradigm which provides computational ...
We demonstrate the all-optical reconstruction of gold nanoparticle geometry using super-resolution m...
Plasmonic particle arrays have remarkable optical properties originating from their collective behav...
Colloidal plasmonic materials are increasingly used in biosensing and catalysis, which has sparked t...
Colloidal plasmonic materials are increasingly used in biosensing and catalysis, which has sparked t...
Colloidal plasmonic materials are increasingly used in biosensing and catalysis, which has sparked t...
Colloidal plasmonic materials are increasingly used in biosensing and catalysis, which has sparked t...
The high sensitivity of localized surface plasmon resonance sensors to the local refractive index al...
The high sensitivity of localized surface plasmon resonance sensors to the local refractive index al...
Plasmonic nano-objects have shown great potential in enhancing sensing, energy transfer and computin...
Over the last decade, two fields have dominated the attention of sub-diffraction photonics research:...
Plasmonic nano-objects have shown great potential in enhancing sensing, energy transfer and computin...
We demonstrate the all-optical reconstruction of gold nanoparticle geometry using super-resolution m...
We demonstrate the all-optical reconstruction of gold nanoparticle geometry using super-resolution m...
We demonstrate the all-optical reconstruction of gold nanoparticle geometry using super-resolution m...
Single-Molecule Localization Microscopy is an optical imaging paradigm which provides computational ...
We demonstrate the all-optical reconstruction of gold nanoparticle geometry using super-resolution m...
Plasmonic particle arrays have remarkable optical properties originating from their collective behav...