Refractive index (RI) sensing is a powerful noninvasive and label-free sensing technique for the identification, detection and monitoring of microfluidic samples with a wide range of possible sensor designs such as interferometers and resonators [1,2]. Most of the existing RI sensing applications focus on biological materials in aqueous solutions in visible and IR frequencies, such as DNA hybridization and genome sequencing. At terahertz frequencies, applications include quality control, monitoring of industrial processes and sensing and detection applications involving nonpolar materials. Several potential designs for refractive index sensors in the terahertz regime exist, including photonic crystal waveguides [3], asymmetric splitring res...
We first review the development of a frequency domain quasi-optical terahertz (THz) chemical sensing...
This work presents an overview of terahertz (THz) spectroscopy with a focus on its implementation w...
We experimentally demonstrate the integration of a microfluidic trap array on top of metamaterial re...
We describethe development of high quality(Q)factor photonic crystal resonators(PCRs)integrated with...
The microwave-to-terahertz frequency range offers unique opportunities for the sensing of liquids ba...
Refractive index sensing is attracting extensive interest. Limited by the weak light–matter interact...
Biosensing with terahertz (THz) waves has received large amounts of attention due to its potential t...
We demonstrate microfluidic devices for terahertz spectroscopy of biomolecules in aqueous solutions....
We have studied several sensor concepts for biomedical applications operating in the millimetre-wave...
Spatial overlap between the electromagnetic fields and the analytes is a key factor for strong light...
Terahertz (THz) radiation has attracted wide attention in recent years due to its non-destructive pr...
This paper introduces the design of a novel microfluidic refractometric optical sensor. The sensor i...
Terahertz-frequency-range measurements can offer potential insight into the picosecond dynamics, and...
Spatial overlap between the electromagnetic fields and the analytes is a key factor for strong light...
This work presents an overview of terahertz (THz) spectroscopy with a focus on its implementation w...
We first review the development of a frequency domain quasi-optical terahertz (THz) chemical sensing...
This work presents an overview of terahertz (THz) spectroscopy with a focus on its implementation w...
We experimentally demonstrate the integration of a microfluidic trap array on top of metamaterial re...
We describethe development of high quality(Q)factor photonic crystal resonators(PCRs)integrated with...
The microwave-to-terahertz frequency range offers unique opportunities for the sensing of liquids ba...
Refractive index sensing is attracting extensive interest. Limited by the weak light–matter interact...
Biosensing with terahertz (THz) waves has received large amounts of attention due to its potential t...
We demonstrate microfluidic devices for terahertz spectroscopy of biomolecules in aqueous solutions....
We have studied several sensor concepts for biomedical applications operating in the millimetre-wave...
Spatial overlap between the electromagnetic fields and the analytes is a key factor for strong light...
Terahertz (THz) radiation has attracted wide attention in recent years due to its non-destructive pr...
This paper introduces the design of a novel microfluidic refractometric optical sensor. The sensor i...
Terahertz-frequency-range measurements can offer potential insight into the picosecond dynamics, and...
Spatial overlap between the electromagnetic fields and the analytes is a key factor for strong light...
This work presents an overview of terahertz (THz) spectroscopy with a focus on its implementation w...
We first review the development of a frequency domain quasi-optical terahertz (THz) chemical sensing...
This work presents an overview of terahertz (THz) spectroscopy with a focus on its implementation w...
We experimentally demonstrate the integration of a microfluidic trap array on top of metamaterial re...