We compare the performance of the nano-photonic waveguide based evanescent Raman sensors and a typical the confocal microscope. For 1 cm long strip silicon nitride waveguides, we theoretically expect more than 500 times higher signal compared to the confocal microscopic systems. The results of our preliminary measurements indicate at least 50 times higher signal. For slotted waveguides, the preliminary measurement result yields about 300 times higher signal compared to confocal microscope while the theoretical figure is more than 2000
We present the first demonstration of on-chip Raman spectroscopy using a single nanoplasmonic antenn...
Nanophotonic waveguide enhanced Raman spectroscopy (NWERS) is a sensing technique that uses a highly...
Nanophotonic waveguide enhanced Raman spectroscopy (NWERS) is a sensing technique that uses a highly...
We compare the performance of the nano-photonic waveguide based evanescent Raman sensors and a typic...
Abstract — we compare the performance of the nano-photonic waveguide based evanescent Raman sensors ...
We demonstrate that the signal-to-noise ratio and signal collection efficiency in evanescent wavegui...
We demonstrate that the signal-to-noise ratio and signal collection efficiency in evanescent wavegui...
We investigate the effect of waveguide geometry on the conversion efficiency of Raman signals collec...
We investigate the effect of waveguide geometry on the conversion efficiency of Raman signals collec...
The evanescent tail of the guided modes can efficiently excite Raman active molecules located in the...
The evanescent tail of the guided modes can efficiently excite Raman active molecules located in the...
We analyze the generation of Surface Enhanced Raman Spectroscopy signals from integrated bowtie ante...
We analyze the generation of Surface Enhanced Raman Spectroscopy signals from integrated bowtie ante...
We review an on-chip approach for spontaneous Raman spectroscopy and surface-enhanced Raman spectros...
Recent studies have shown that evanescent Raman spectroscopy using a silicon nitride (SiN) nanophoto...
We present the first demonstration of on-chip Raman spectroscopy using a single nanoplasmonic antenn...
Nanophotonic waveguide enhanced Raman spectroscopy (NWERS) is a sensing technique that uses a highly...
Nanophotonic waveguide enhanced Raman spectroscopy (NWERS) is a sensing technique that uses a highly...
We compare the performance of the nano-photonic waveguide based evanescent Raman sensors and a typic...
Abstract — we compare the performance of the nano-photonic waveguide based evanescent Raman sensors ...
We demonstrate that the signal-to-noise ratio and signal collection efficiency in evanescent wavegui...
We demonstrate that the signal-to-noise ratio and signal collection efficiency in evanescent wavegui...
We investigate the effect of waveguide geometry on the conversion efficiency of Raman signals collec...
We investigate the effect of waveguide geometry on the conversion efficiency of Raman signals collec...
The evanescent tail of the guided modes can efficiently excite Raman active molecules located in the...
The evanescent tail of the guided modes can efficiently excite Raman active molecules located in the...
We analyze the generation of Surface Enhanced Raman Spectroscopy signals from integrated bowtie ante...
We analyze the generation of Surface Enhanced Raman Spectroscopy signals from integrated bowtie ante...
We review an on-chip approach for spontaneous Raman spectroscopy and surface-enhanced Raman spectros...
Recent studies have shown that evanescent Raman spectroscopy using a silicon nitride (SiN) nanophoto...
We present the first demonstration of on-chip Raman spectroscopy using a single nanoplasmonic antenn...
Nanophotonic waveguide enhanced Raman spectroscopy (NWERS) is a sensing technique that uses a highly...
Nanophotonic waveguide enhanced Raman spectroscopy (NWERS) is a sensing technique that uses a highly...