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一种基于D型光子晶体光纤的可重构表面等离子体滤波器/传感器。

A Reconfigurable Surface-Plasmon-Based Filter/Sensor Using D-Shaped Photonic Crystal Fiber.

作者信息

Selvendran S, Divya J, Sivanantha Raja A, Sivasubramanian A, Itapu Srikanth

机构信息

School of Electronics Engineering (SENSE), Vellore Institute of Technology, Chennai 600127, Tamil Nadu, India.

Department of ECE, Alagappa Chettiar Government College of Engineering and Technology, Karaikudi 630003, Tamil Nadu, India.

出版信息

Micromachines (Basel). 2022 Jun 9;13(6):917. doi: 10.3390/mi13060917.

Abstract

A reconfigurable surface-plasmon-based filter/sensor using D-shaped photonic crystal fiber is proposed. Initially a D-shaped PCF is designed and optimized to realize the highly birefringence and by ensuring the single polarization filter. A tiny layer of silver is placed on the flat surface of the D-shaped fiber with a small half-circular opening to activate the plasmon modes. By the surface plasmon effect a maximum confinement loss of about 713 dB/cm is realized at the operating wavelength of 1.98 µm in X-polarized mode. At this wavelength the proposed fiber only allows Y-polarization and filters the X-polarization using surface plasmon resonance. It is also exhibiting maximum confinement loss of about 426 dB/cm at wavelength 1.92 µm wavelength for Y-polarization. At this 1.92 µm wavelength the proposed structure attenuated the Y-polarization completely and allowed X-polarization alone. The proposed PCF polarization filter can be extended as a sensor by adding an analyte outside this filter structure. The proposed sensor can detect even a small refractive index (RI) variation of analytes ranging from 1.34-1.37. This sensor provides the maximum sensitivity of about 5000 nm/RIU; it enables this sensor to be ideally suited for various biosensing and industrial applications.

摘要

提出了一种基于表面等离子体的可重构滤波器/传感器,该传感器使用D形光子晶体光纤。首先设计并优化了D形光子晶体光纤,以实现高双折射并确保单偏振滤波器。在D形光纤的平面上放置一小层银,并带有一个小的半圆形开口,以激活等离子体模式。通过表面等离子体效应,在1.98 µm的工作波长下,X偏振模式下实现了约713 dB/cm的最大限制损耗。在该波长下,所提出的光纤仅允许Y偏振,并利用表面等离子体共振滤除X偏振。在1.92 µm波长下,Y偏振的最大限制损耗也约为426 dB/cm。在1.92 µm波长下,所提出的结构完全衰减了Y偏振,仅允许X偏振通过。通过在该滤波器结构外部添加分析物,所提出的光子晶体光纤偏振滤波器可以扩展为传感器。所提出的传感器甚至可以检测分析物在1.34 - 1.37范围内的微小折射率(RI)变化。该传感器提供约5000 nm/RIU的最大灵敏度;这使得该传感器非常适合各种生物传感和工业应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1f7c/9230845/8042ac53d6ef/micromachines-13-00917-g001.jpg

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