Biswas, Tushar and Chattopadhyay, Rik and Bhadra, Shyamal Kumar (2014) Plasmonic hollow-core photonic band gap fiber for efficient sensing of biofluids. Journal of Optics, 16 (4). Article No.-045001. ISSN 0972-8821

[img] PDF - Published Version
Restricted to Registered users only

Download (1647Kb) | Request a copy
[img]
Preview
PDF - Cover Image
Download (662Kb) | Preview

Abstract

We report a new family of hollow-core photonic crystal fibers with embedded metal wires for sensitive refractive index measurement of fluids. These fibers operate on the principle of resonant coupling of the guided core mode with the surface plasmon mode generated at the surface of metal wires embedded in the photonic crystal structure. A maximum sensitivity of 2151 nm RIU-1 (nanometer per refractive index unit) can be achieved even for refractive index values lower than 1.26. The fiber is simple in design and can be fabricated with a certain modification to the conventional hollow-core photonic band gap fiber manufacturing technique. The proposed design is useful for detecting a small change in refractive index of the sample and may be implemented to estimate the bulk permittivity of the core fluid.

Item Type: Article
Uncontrolled Keywords: Cover page image
Subjects: Processing Science
Divisions: Fiber Optics and Photonics
Depositing User: Bidhan Chaudhuri
Date Deposited: 15 Dec 2014 06:38
Last Modified: 12 Aug 2015 11:18
URI: http://cgcri.csircentral.net/id/eprint/2622

Actions (login required)

View Item View Item