Abstract
The proposed dual-core photonic crystal fibers (DC-PCFs) structure has been simulated using FIMMWAVE and its performance has been evaluated using Finite element method (FEM). The result indicates an enhanced flattened dispersion profile for the wide range of wavelength which is the utmost requirement of optical communication system and links.
References
1. Ahmed K, Morshed M, Asaduzzaman S, Arif MFH. Optimization and enhancement of liquid analyte sensing performance based on square-cored octagonal photonic crystal fiber. Optik-Int J Light Opt. 2017;131:687–96.10.1016/j.ijleo.2016.11.171Search in Google Scholar
2. Ahmed K, Morshed M. Design and numerical analysis of microstructured-core octagonal photonic crystal fiber for sensing applications. Sen Bio-Sen Res. 2016;7:1–6.10.1016/j.sbsr.2015.10.005Search in Google Scholar
3. Muduli N, Padhy HK. An optimized configuration of large mode field area PMMA photonic crystal fiber with low bending loss: a new approach. J Mater Sci Mater Electron. 2016;27: 1906–12. Senior: Optical Fiber Communication- Principles and Practice, Pearson Publications, Third Edition,2009.10.1007/s10854-015-3972-5Search in Google Scholar
4. Asaduzzaman S, Ahmed K, Paul BK. Slotted-core photonic crystal fiber in gas sensing application. Proc. Of SPIE 10025. 2016;1–9.10.1117/12.2247753Search in Google Scholar
5. Maji PS, Chaudhuri PR. Geometrical parameters dependence towards ultra-flat dispersion square-lattice PCF with selective liquid infiltration. arXiv preprint arXiv. 2014;1412:8599.10.11648/j.ajop.20130105.11Search in Google Scholar
6. Tai SP, Chan MC, Tsai TH, Guol SH, Chen LJ, Sun CK. Two-photon fluorescence microscope with a hollow-core photonic crystal fiber. Opt Express. 2004;12:6122–28.10.1117/12.588474Search in Google Scholar
7. Raj GJ, Raja RVJ, Grelu P, Ganapathy R, Porsezian K. Effect of temperature on supercontinuum generation in water-Core photonic crystal fiber. IEEE Photon Technol Lett. 2016;28: 1209–12. Communication: Tata McGraw Hill Publications, Second Edition,1991.10.1109/LPT.2015.2499222Search in Google Scholar
8. Singla S, Singal P. Photonic crystal fiber: construction, properties, developments and applications. Int J Electron Eng. 2017 Jan-June;9:193–200. ISSN: 0973-7383.Search in Google Scholar
9. Agrawal GP. Fiber optic communication systems. New York: John Wiley and Sons; 1997.Search in Google Scholar
© 2018 Walter de Gruyter GmbH, Berlin/Boston
Articles in the same Issue
- Frontmatter
- Amplifiers
- Performance Analysis of Distributed Raman Amplifier Using Different Pumping Methods in DWDM Communication Systems
- Influence of Conventional Optical Amplifiers for 64×10 Gbps WDM System
- Devices
- Cross-Layer Optimization and Cascadability of Optical Switches in Fiber Optic Data Networks
- Arrayed Waveguide Grating and Re-Circulating Buffer Based Optical Packet Switch
- A Joint Multicast Optimization Approach for QoS Provisioning in Optical Label Switching (OLS) Networks
- Fibers
- Rigorous Eigenmode Derivations and Spectral Analysis for Step-Index Confocal Parabolic Optical Fibers
- Design and Characterization of an Ultra Low Loss, Dispersion-Flattened Slotted Photonic Crystal Fiber for Terahertz Application
- Analysis of Microstructured Photonic Crystal Fiber with Dual Core Suspension for the Enhanced Supercontinuum Generation
- Measurements
- Analysis of Optical Backbone Fiber and Trace Report of Break Fiber by Using Optical Time Domain Reflectometer
- Networks
- An Improved Hybrid WDM/TDM PON Model with Enhanced Performance Using Different Modulation Formats of WDM Transmitter
- Receiver
- Efficient Blind Adaptive CSE to Reduce Cyclic Prefix Length in Direct Detection Optical OFDM Systems
- Systems
- Novel Manchester-Based Multilevel Signaling for High-Speed Optical Communication Systems
- Analysis of Four Wave Mixing Effects in 16 ×10 Gb/S WDM Optical Communication System
- Design and Simulation of 1.28 Tbps Dense Wavelength Division Multiplex System Suitable for Long Haul Backbone
- Millimetre Waves Over Free Space Optics System for 5G Application
- 40 Gbps Laguerre-Gaussian and Hermite-Gaussian Optical Mode Division Multiplexing for Radio over Fiber System
- Theory
- A Study of Different Forms of Dual Polarization – Quadrature Amplitude Modulation and its Performance Analysis in Terms of Q-Factor and Distance
Articles in the same Issue
- Frontmatter
- Amplifiers
- Performance Analysis of Distributed Raman Amplifier Using Different Pumping Methods in DWDM Communication Systems
- Influence of Conventional Optical Amplifiers for 64×10 Gbps WDM System
- Devices
- Cross-Layer Optimization and Cascadability of Optical Switches in Fiber Optic Data Networks
- Arrayed Waveguide Grating and Re-Circulating Buffer Based Optical Packet Switch
- A Joint Multicast Optimization Approach for QoS Provisioning in Optical Label Switching (OLS) Networks
- Fibers
- Rigorous Eigenmode Derivations and Spectral Analysis for Step-Index Confocal Parabolic Optical Fibers
- Design and Characterization of an Ultra Low Loss, Dispersion-Flattened Slotted Photonic Crystal Fiber for Terahertz Application
- Analysis of Microstructured Photonic Crystal Fiber with Dual Core Suspension for the Enhanced Supercontinuum Generation
- Measurements
- Analysis of Optical Backbone Fiber and Trace Report of Break Fiber by Using Optical Time Domain Reflectometer
- Networks
- An Improved Hybrid WDM/TDM PON Model with Enhanced Performance Using Different Modulation Formats of WDM Transmitter
- Receiver
- Efficient Blind Adaptive CSE to Reduce Cyclic Prefix Length in Direct Detection Optical OFDM Systems
- Systems
- Novel Manchester-Based Multilevel Signaling for High-Speed Optical Communication Systems
- Analysis of Four Wave Mixing Effects in 16 ×10 Gb/S WDM Optical Communication System
- Design and Simulation of 1.28 Tbps Dense Wavelength Division Multiplex System Suitable for Long Haul Backbone
- Millimetre Waves Over Free Space Optics System for 5G Application
- 40 Gbps Laguerre-Gaussian and Hermite-Gaussian Optical Mode Division Multiplexing for Radio over Fiber System
- Theory
- A Study of Different Forms of Dual Polarization – Quadrature Amplitude Modulation and its Performance Analysis in Terms of Q-Factor and Distance