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Optical Tamm-state fiber optic sensing

Design and Theoretical Study of One-Dimensional Photonic Crystal

This research presents a one-dimensional photonic crystal structure designed for precise angle and refractive index

High Sensitivity Hydrogen Sensor via the Coupling of Tamm

While fiber optic sensors are established optical hydrogen-sensing technologies, their adoption is hampered by

Tamm Plasmon Resonance in Mesoporous Multilayers: Toward a Sensing

A novel optical sensor is proposed, based on the normal-incidence excitation of Tamm plasmons at the interface

Numerical Simulation of Optical Fiber Tamm Plasmon Polariton

Abstract: An optical fiber Tamm plasmon polariton (TPP) sensor based on D-shaped hollow-core photonic crystal fiber

Novel sensing concept based on optical Tamm plasmon

Abstract:This paper proposes a novel concept of refractive index sensing taking advantage of a high-refractive-index-contrast optical

Tamm Plasmon Polariton Biosensors Based on Porous Silicon

Tamm Plasmon Polariton (TPP) is a nanophotonic phenomenon that has attracted much attention due to its spatial

Optical Tamm States in 2D Nanostructured Magnetophotonic Structures

We numerically explore optical Tamm states (OTS) supported by a photonic structure composed of a nanostructured

Optical Fiber Sensors and Sensing Networks: Overview of the Main

Optical fiber sensors present several advantages in relation to other types of sensors. These advantages are

Multi-resonance enhanced photothermal synergistic fiber-optic Tamm

Fiber-optic H2 sensors are gaining attention for their integration and remote sensing capabilities. However, they face

Novel design of wide temperature ranges sensor based on Tamm state

An ultra-high sensitive sensor over a wide range of temperatures based on the optical Tamm resonance and the

Tamm-surface plasmon resonances from nanograting-coupled

Herein, we propose and theoretically demonstrate a nanograting-coupled plasmonic-photonic multilayer structure potentially

Design rules for optical Tamm plasmon refractive index sensor based

We investigated the realization of optical Tamm states (OTS) based on a unique DBR consisting of GaN and porous

Refractive index measurement using Tamm plasmon resonance on

This study presents a novel design of a refractive index sensor utilizing TPP resonance, which is implemented on the

Theoretical optimization of Tamm plasmon polariton structure for

In this paper, we investigate the characteristics of optical Tamm plasmon polariton states within the photonic band

Inverse Opal Optical Tamm State for Sensing Applications

We report the existence of optical Tamm states (OTS) in inverse opal (IO) - based three-dimensional photonic crystal on a flat metal

Highly sensitive sensors of fluid detection based on magneto-optical

Herein, a new MO optical Tamm state sensor (MOOTS) based on the classical prism coupling system for refractive

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