This study proposes a compact plasmonic metal-insulator-metal pressure sensor comprising a bus waveguide and a resonator, including one horizontal slot and several stubs. We calculate the transmittance spectrum and the electromagnetic field distribution using the finite element method. When the resonator’s top layer undergoes pressure, the resonance wavelength redshifts with increasing deformation, and their relation is nearly linear. The designed pressure sensor possesses the merits of ultrahigh sensitivity, multiple modes, and a simple structure. The maximum sensitivity and resonance wavelength shift can achieve 592.44 nm/MPa and 364 nm, respectively, which are the highest values to our knowledge. The obtained sensitivity shows 23.32 time...
To reduce the loss of the metal–insulator–metal waveguide structure in the near-infrared region, a p...
Abstract A refractive index sensor based on Fano resonances in metal-insulator-metal (MIM) waveguide...
Fano resonances are numerically predicted in an ultracompact plasmonic structure, comprising a metal...
This study proposes a compact plasmonic metal-insulator-metal pressure sensor comprising a bus waveg...
Abstract In this paper, we have proposed a metal-insulator-metal (MIM) pressure sensor which consist...
peer reviewedWe present a pressure-induced deformation-sensitive device based on 2D matrices of plas...
A pressure-induced deformation-sensitive device (DSD) is presented based on 2D matrices of plasmonic...
In this study, a novel refractive index sensor structure was designed consisting of a metal-insulato...
A refractive index sensor based on metal-insulator-metal (MIM) waveguides coupled double rectangular...
We propose an ultra-compact plasmonic nanostructure to realize multiple Fano resonance (FR) modes, c...
An ultra-compact plasmonics-based sensor is investigated which is excited by Fano resonance. The str...
We present the design, fabrication and characterization of a new all-optical frequency modulated pre...
This paper reports a nano-opto-mechanical pressure sensor based on nano-scaled ring resonator. The p...
A plasmonic refractive index (RI) sensor based on metal-insulator-metal (MIM) waveguide coupled with...
High-sensitivity pressure sensors are crucial for the ultrasensitive touch technology and E-skin, es...
To reduce the loss of the metal–insulator–metal waveguide structure in the near-infrared region, a p...
Abstract A refractive index sensor based on Fano resonances in metal-insulator-metal (MIM) waveguide...
Fano resonances are numerically predicted in an ultracompact plasmonic structure, comprising a metal...
This study proposes a compact plasmonic metal-insulator-metal pressure sensor comprising a bus waveg...
Abstract In this paper, we have proposed a metal-insulator-metal (MIM) pressure sensor which consist...
peer reviewedWe present a pressure-induced deformation-sensitive device based on 2D matrices of plas...
A pressure-induced deformation-sensitive device (DSD) is presented based on 2D matrices of plasmonic...
In this study, a novel refractive index sensor structure was designed consisting of a metal-insulato...
A refractive index sensor based on metal-insulator-metal (MIM) waveguides coupled double rectangular...
We propose an ultra-compact plasmonic nanostructure to realize multiple Fano resonance (FR) modes, c...
An ultra-compact plasmonics-based sensor is investigated which is excited by Fano resonance. The str...
We present the design, fabrication and characterization of a new all-optical frequency modulated pre...
This paper reports a nano-opto-mechanical pressure sensor based on nano-scaled ring resonator. The p...
A plasmonic refractive index (RI) sensor based on metal-insulator-metal (MIM) waveguide coupled with...
High-sensitivity pressure sensors are crucial for the ultrasensitive touch technology and E-skin, es...
To reduce the loss of the metal–insulator–metal waveguide structure in the near-infrared region, a p...
Abstract A refractive index sensor based on Fano resonances in metal-insulator-metal (MIM) waveguide...
Fano resonances are numerically predicted in an ultracompact plasmonic structure, comprising a metal...