Recent studies have shown that evanescent Raman spectroscopy using a silicon nitride (SiN) nanophotonic waveguide platform has higher signal enhancement when compared to free-space systems. However, signal-to-noise ratio from the waveguide at a low analyte concentration is constrained by the shot-noise from the background light originating from the waveguide itself. Hence, understanding the origin and properties of this waveguide background luminescence (WGBL) is essential to developing mitigation strategies. Here, we identify the dominating component of the WGBL spectrum composed of a broad Raman scattering due to momentum selection-rule breaking in amorphous materials, and several peaks specific to molecules embedded in the core. We deter...
Waveguide Raman spectroscopy uses the evanescent field outside a waveguide to probe the analyte on t...
Lab-on-chip approaches, based on CMOS-compatible silicon nitride photonic waveguides, may have a lar...
Lab-on-chip approaches, based on CMOS-compatible silicon nitride photonic waveguides, may have a lar...
Recent studies have shown that evanescent Raman spectroscopy using a silicon nitride (SiN) nanophoto...
Recent studies have shown that evanescent Raman spectroscopy using a silicon nitride (SiN) nanophoto...
The evanescent tail of the guided modes can efficiently excite Raman active molecules located in the...
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...
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 propose to use silicon nitride (Si3N4) based photonic waveguides in a lab-on-a-chip context for R...
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 demonstrate that the signal-to-noise ratio and signal collection efficiency in evanescent wavegui...
Waveguide Raman spectroscopy uses the evanescent field outside a waveguide to probe the analyte on t...
Lab-on-chip approaches, based on CMOS-compatible silicon nitride photonic waveguides, may have a lar...
Lab-on-chip approaches, based on CMOS-compatible silicon nitride photonic waveguides, may have a lar...
Recent studies have shown that evanescent Raman spectroscopy using a silicon nitride (SiN) nanophoto...
Recent studies have shown that evanescent Raman spectroscopy using a silicon nitride (SiN) nanophoto...
The evanescent tail of the guided modes can efficiently excite Raman active molecules located in the...
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...
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 propose to use silicon nitride (Si3N4) based photonic waveguides in a lab-on-a-chip context for R...
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 demonstrate that the signal-to-noise ratio and signal collection efficiency in evanescent wavegui...
Waveguide Raman spectroscopy uses the evanescent field outside a waveguide to probe the analyte on t...
Lab-on-chip approaches, based on CMOS-compatible silicon nitride photonic waveguides, may have a lar...
Lab-on-chip approaches, based on CMOS-compatible silicon nitride photonic waveguides, may have a lar...