A sensor designed to detect bio-molecules is presented. The sensor exploits a planar 2D photonic crystal (PC) membrane with sub-micron thickness and through holes, to induce high optical fields that allow detection of nano-particles smaller than the diffraction limit of an optical microscope. We report on our design and fabrication of a PC membrane with a nano-particle trapped inside. We have also designed and built an imaging system where an optical microscope and a CCD camera are used to take images of the PC membrane. Results show how the trapped nano-particle appears as a bright spot in the image. In a first experimental realization of the imaging system, single particles with a radius of 75 nm can be detected
This chapter is dedicated to nanoplasmonic sensing systems made compatible with studies of artificia...
Planar photonic crystal nanocavities, made in a thin semiconductor membrane and suspended by breakab...
Photonic biosensors are a major topic of research that continues to make exciting advances. Technolo...
-A sensor designed to detect bio-molecules is presented. The sensor exploits a planar 2D photonic cr...
-We investigate, by simulations and experiments, the light scattering of small particles trapped in ...
The work presented in this dissertation addresses the optimization and application of a newly devel...
We review the development and application of nanostructured photonic crystal surfaces and a hyperspe...
[[abstract]]A photonic crystal (PhC) biosensor is presented to have improved sensitivity for detecti...
Thesis (Ph. D.)--University of Rochester. Department of Biomedical Engineering, 2015.Nanoscale inter...
Photonic crystals, since their discovery in 1987 have been of great interest to the optics community...
Photonic crystals, since their discovery in 1987 have been of great interest to the optics community...
During the last decade, the development of optofluidic chips has become a large field of research. T...
The detection of low abundant biomarkers, such as circulating microRNAs, demands innovative detectio...
We present a handheld biosensor system for the label-free and specific multiplexed detection of seve...
Optical imaging of individual nanoparticles (NPs) has gained significant attention in recent years ...
This chapter is dedicated to nanoplasmonic sensing systems made compatible with studies of artificia...
Planar photonic crystal nanocavities, made in a thin semiconductor membrane and suspended by breakab...
Photonic biosensors are a major topic of research that continues to make exciting advances. Technolo...
-A sensor designed to detect bio-molecules is presented. The sensor exploits a planar 2D photonic cr...
-We investigate, by simulations and experiments, the light scattering of small particles trapped in ...
The work presented in this dissertation addresses the optimization and application of a newly devel...
We review the development and application of nanostructured photonic crystal surfaces and a hyperspe...
[[abstract]]A photonic crystal (PhC) biosensor is presented to have improved sensitivity for detecti...
Thesis (Ph. D.)--University of Rochester. Department of Biomedical Engineering, 2015.Nanoscale inter...
Photonic crystals, since their discovery in 1987 have been of great interest to the optics community...
Photonic crystals, since their discovery in 1987 have been of great interest to the optics community...
During the last decade, the development of optofluidic chips has become a large field of research. T...
The detection of low abundant biomarkers, such as circulating microRNAs, demands innovative detectio...
We present a handheld biosensor system for the label-free and specific multiplexed detection of seve...
Optical imaging of individual nanoparticles (NPs) has gained significant attention in recent years ...
This chapter is dedicated to nanoplasmonic sensing systems made compatible with studies of artificia...
Planar photonic crystal nanocavities, made in a thin semiconductor membrane and suspended by breakab...
Photonic biosensors are a major topic of research that continues to make exciting advances. Technolo...