The scattering and absorption of light by nano-objects is a key physical property exploited in many applications, including biosensing and photovoltaics. Yet, its quantification at the single object level is challenging and often requires expensive and complicated techniques. We report a method based on a commercial transmission microscope to measure the optical scattering and absorption cross sections of individual nano-objects. The method applies to microspectroscopy and wide-field image analysis, offering fine spectral information and high throughput sample characterization. Accurate cross-section determination requires detailed modeling of the measurement, which we develop, accounting for the geometry of the illumination and detection a...
Several recently developed detection techniques opened studies of individual metal nanoparticles (1-...
Metallic nanoparticles supporting a localized surface plasmon resonance have emerged as promising pl...
International audienceIn this paper we present an experimental apparatus capable of measuring the di...
The scattering and absorption of light by nano-objects is a key physical property exploited in many ...
The scattering and absorption of light by nano-objects is a key physical property exploited in many ...
Nanoparticles are ubiquitous in nature, and the number of technological applications exploiting nano...
The optical response of metal nanoparticles is governed by plasmonic resonances, which depend often ...
The optical response of metal nanoparticles is governed by plasmonic resonances, which depend often ...
We present a wide-field imaging technique recently developed by us to measure quantitatively the opt...
Nanoparticles are rapidly becoming ubiquitous in modern technology and so there is an emerging need ...
The optical response of metal nanoparticles is governed by plasmonic resonances, which are dictated...
An accurate estimation of optical absorption coefficient (mu(abs)) and scattering coefficient (mu(sc...
We have developed a simple, fast, and flexible technique to measure optical scattering spectra of in...
Several recently developed detection techniques opened studies of individual metal nanoparticles (1-...
Metallic nanoparticles supporting a localized surface plasmon resonance have emerged as promising pl...
International audienceIn this paper we present an experimental apparatus capable of measuring the di...
The scattering and absorption of light by nano-objects is a key physical property exploited in many ...
The scattering and absorption of light by nano-objects is a key physical property exploited in many ...
Nanoparticles are ubiquitous in nature, and the number of technological applications exploiting nano...
The optical response of metal nanoparticles is governed by plasmonic resonances, which depend often ...
The optical response of metal nanoparticles is governed by plasmonic resonances, which depend often ...
We present a wide-field imaging technique recently developed by us to measure quantitatively the opt...
Nanoparticles are rapidly becoming ubiquitous in modern technology and so there is an emerging need ...
The optical response of metal nanoparticles is governed by plasmonic resonances, which are dictated...
An accurate estimation of optical absorption coefficient (mu(abs)) and scattering coefficient (mu(sc...
We have developed a simple, fast, and flexible technique to measure optical scattering spectra of in...
Several recently developed detection techniques opened studies of individual metal nanoparticles (1-...
Metallic nanoparticles supporting a localized surface plasmon resonance have emerged as promising pl...
International audienceIn this paper we present an experimental apparatus capable of measuring the di...