Plasmonics-based spatially activated light microscopy for super-resolution imaging of molecular fluorescence

K Kim, Y Oh, W Lee, D Kim - Optics letters, 2010 - opg.optica.org
In this Letter, we explore plasmonics-based spatially activated light microscopy (PSALM) for
sub-diffraction-limited imaging of biomolecules. PSALM is based on the spatially switched …

Visualisation of plasmonic fields at the nanoscale with single molecule localisation microscopy

C Steuwe, M Erdelyi, G Szekeres… - Nanoimaging and …, 2015 - spiedigitallibrary.org
Plasmonic coupling of light to free electrons on metallic surfaces allows the confinement of
electric fields far below the optical diffraction limit. Scattering processes of molecules placed …

Localized surface plasmon enhanced cellular imaging using random metallic structures

T Son, W Lee, D Kim - Plasmonics in Biology and Medicine …, 2017 - spiedigitallibrary.org
We have studied fluorescence cellular imaging with randomly distributed localized near-field
induced by silver nano-islands. For the fabrication of nano-islands, a 10-nm silver thin film …

Visualization of molecular fluorescence point spread functions via remote excitation switching fluorescence microscopy

L Su, G Lu, B Kenens, S Rocha, E Fron, H Yuan… - Nature …, 2015 - nature.com
The enhancement of molecular absorption, emission and scattering processes by coupling
to surface plasmon polaritons on metallic nanoparticles is a key issue in plasmonics for …

[引用][C] Plasmonic Nanoaperture Arrays for Molecular Imaging and Detection Based on Localization Switching

[引用][C] Plasmonic light switching for localization-based molecular imaging and detection

[引用][C] Localization Switching-Based Molecular Imaging and Detection Using Plasmonic Nanoaperture Arrays

[引用][C] Plasmonics-Based Intracellular Imaging

D Kim, H Lee, H Yoo, G Moon

[引用][C] Plasmonic localization microscopy and biomolecular sensing: limits and potentials

[引用][C] Engineering plasmonic near-fields for cellular imaging