• Tidak ada hasil yang ditemukan

Exploring the Optical Properties of Exposed-core-based Photonic-crystal Fibers

N/A
N/A
Protected

Academic year: 2024

Membagikan "Exploring the Optical Properties of Exposed-core-based Photonic-crystal Fibers"

Copied!
1
0
0

Teks penuh

(1)

Exploring the Optical Properties of Exposed-core-based Photonic-crystal Fibers

Sumaiya Akhtar Mitu, Kawsar Ahmed, Hasan Abdullah, Bikash Kumar Paul, Fahad Ahmed Al- Zahrani, Shobhit K. Patel, M. S. Mani Rajan

Abstract:

A photonic-crystal fiber (PCF) based on the surface plasmon resonance (SPR) effect with low confinement loss and high sensitivity response is designed and its optical properties analyzed when varying different parameters. The SPR-based PCF design is analyzed to enable control over its light propagation and evanescent properties. In this investigation, gold (Au) is used as a plasmonic material to generate the SPR effect at the interface. The simulation results reveal a maximum sensitivity response of 45,303 nm/RIU with resolution of 7.0634 × 10–6 and low confinement loss of 0.575 dB/cm in the wavelength range from 1.2 to 2 µm. A high figure of merit of 378 with low full-width at half-maxima is also obtained. The proposed structure thus offers ultralow confinement loss and high sensitivity.

Conference / Journal Link:

https://link.springer.com/article/10.1007/s10825-021-01674-y

DOI:

https://doi.org/10.1007/s10825-021-01674-y

Referensi

Dokumen terkait

The journal homepage www.jpacr.ub.ac.id Effect of Precursor Concentration and Annealed Substrate Temperature on the Crystal Structure, Electronic and Optical Properties of ZnO Thin

scanning tunable laser LD PD photodetector computer white light source 12X zoom barrel 50X, NA=0.4 objective optical fiber taper photonic crystal microcavity GPIB S-Video

For our second demonstration, we take a point defect photonic crystal cavity in the nominal acceptor configuration where the central defect has a lower index of refraction than the bulk

The Design of Monolithic Integration of Photonic Crystal Biosensor to Si-Ge PIN Photodetector on Silicon Photonics Platform for Compact Biosensing System Mohamad Hazwan Haron1,

Photonic crystal cavities with high quality factor Q and ultra-small volume V higher Q/V ratio leads to higher cavity intensity and then higher non-linear effects are the best candidate

Summary We have demonstrated that the proposed system of a metal-dielectric-metal slab waveguide with embedded 1D metallodielectric photonic crystal exhibits optical band-gap for a

Simulation results show that changes in optical parameters such as the angle of incidence can shift PBP at certain wavelengths, while variations in the refractive index of the second

Design and Simulation of Sensor Based on One Dimensional Photonic Crystal Metallodielectric with Two Defect 151 Published By: Blue Eyes Intelligence Engineering & Sciences