We experimentally demonstrate the integration of a microfluidic trap array on top of metamaterial resonators for size selective trapping and remote sensing of microparticles. A split-ring resonator (SRR) design supports strongly confined electric field in the capacitive split gap at the fundamental inductive-capacitive resonance mode. The tightly confined electric field in the SRR gap forms a hot-spot that has become an enabling platform for sensing applications. Here, we extend the concept of metamaterial sensing to “trapping and sensing” by fabricating trapezoidal shaped structures near the split gap that enables trapping of microparticles in the split-gap region of each SRR. The proposed microfluidic metamaterial sensor enables sensing o...
The function of metamaterials targeted for operation at terahertz frequencies was investigated inclu...
In this paper, we propose a novel metamaterial-based microwave thin-film sensor that incorporates mu...
Refractive index (RI) sensing is a powerful noninvasive and label-free sensing technique for the ide...
Spatial overlap between the electromagnetic fields and the analytes is a key factor for strong light...
Spatial overlap between the electromagnetic fields and the analytes is a key factor for strong light...
Electromagnetic metamaterials have emerged as a powerful tool to tailor the electromagnetic material...
Abstract — A new metamaterial-inspired microwave microflu-idic sensor is proposed in this paper. The...
Terahertz (THz) radiation has attracted wide attention in recent years due to its non-destructive pr...
A new metamaterial-inspired microwave microfluidic sensor is proposed in this paper. The main part o...
Designing terahertz sensors with high sensitivity to detect nanoscale thin films and single biomolec...
Electromagnetic metamaterials are engineered materials that exhibit controllable electromagnetic pro...
The terahertz spectral region has received tremendous attention for label free chemical and biologic...
This work pertains to the design, development and experimentation of Terahertz Metasurfaces and thei...
In genetic diagnostics, analysis is mostly based on fluorescent labelling of target DNA molecule and...
A new metamaterial-inspired microwave microfluidic sensor is proposed in this paper. The main part o...
The function of metamaterials targeted for operation at terahertz frequencies was investigated inclu...
In this paper, we propose a novel metamaterial-based microwave thin-film sensor that incorporates mu...
Refractive index (RI) sensing is a powerful noninvasive and label-free sensing technique for the ide...
Spatial overlap between the electromagnetic fields and the analytes is a key factor for strong light...
Spatial overlap between the electromagnetic fields and the analytes is a key factor for strong light...
Electromagnetic metamaterials have emerged as a powerful tool to tailor the electromagnetic material...
Abstract — A new metamaterial-inspired microwave microflu-idic sensor is proposed in this paper. The...
Terahertz (THz) radiation has attracted wide attention in recent years due to its non-destructive pr...
A new metamaterial-inspired microwave microfluidic sensor is proposed in this paper. The main part o...
Designing terahertz sensors with high sensitivity to detect nanoscale thin films and single biomolec...
Electromagnetic metamaterials are engineered materials that exhibit controllable electromagnetic pro...
The terahertz spectral region has received tremendous attention for label free chemical and biologic...
This work pertains to the design, development and experimentation of Terahertz Metasurfaces and thei...
In genetic diagnostics, analysis is mostly based on fluorescent labelling of target DNA molecule and...
A new metamaterial-inspired microwave microfluidic sensor is proposed in this paper. The main part o...
The function of metamaterials targeted for operation at terahertz frequencies was investigated inclu...
In this paper, we propose a novel metamaterial-based microwave thin-film sensor that incorporates mu...
Refractive index (RI) sensing is a powerful noninvasive and label-free sensing technique for the ide...