Abstract
In this paper, Two Dimensional (2D) Photonic Crystal (PhC) based 3-input all optical NOR, NAND and XNOR gates is proposed and designed. The proposed device is formed by the combination of line defects and square cavity. The performance of the device is analyzed using 2D Finite Difference Time Domain (FDTD) method. The band gap analysis is done by Plane Wave Expansion (PWE) method. The device has the lattice constant and refractive index of 616 nm and 3.46, respectively. The dimension of the proposed structure is about 12.5 µm*12 µm which is highly compact and suitable for photonic integrated circuits (PIC).
References
1. Ishizaka Y, Kawaguchi Y, Saitoh K, Koshiba M. Design of ultra compact all-optical XOR and AND logic gates with low power consumption. Opt Commun. 2011;284:3528–33.10.1016/j.optcom.2011.03.069Search in Google Scholar
2. Stubkjaer KE. Semiconductor optical amplifier-based all-optical gates for high-speed optical processing. IEEE J Sel Top Quantum Electron. 2000;6:1428–35.10.1109/2944.902198Search in Google Scholar
3. Li Z, Liu Y, Zhang S, Ju H, de Waardt H, Khoe GD, et al. All-optical logic gates based on an SOA and an optical filter. In: 31st European conference on optical communication, 2, 2005:229–30.10.1049/cp:20050456Search in Google Scholar
4. Li LP, Xiu HD, Liang ZX. Ultrahigh-speed multifunctional all-optical logic gates based on FWM in SOAs with PolSK modulated signals. Optical Fiber Communication /National Fiber Optic Engineers Conference, 1, 2008:1–3.Search in Google Scholar
5. Zoiros KE, Das MK, Gayen DK, Maity HK, Chattopadhyay T, Roy JN. All-optical pseudorandom binary sequence generator with TOAD-based D flip-flops. Opt Commun. 2011;284:4297–306.10.1016/j.optcom.2011.05.007Search in Google Scholar
6. Singh SL. Ultrahigh speed optical signal processing logic based on an SOA-MZI. IEEE J Sel Top Quantum Electron. 2011;18:970–7.10.1109/JSTQE.2011.2155623Search in Google Scholar
7. Dimitriadou E, Zoiros KE. On the design of reconfigurable ultrafast all-optical NOR and NAND gates using a single quantum-dot semiconductor optical amplifier-based Mach-Zehnder interferometer. J Opt. 2012;14:105401.10.1088/2040-8978/14/10/105401Search in Google Scholar
8. Dimitriadou E, Zoiros KE. Proposal for ultrafast all-optical XNOR gate using single quantum-dot semiconductor optical amplifier-based Mach-Zehnder interferometer. Opt Laser Technol. 2013;45:79–88.10.1016/j.optlastec.2012.07.024Search in Google Scholar
9. Kotb A, Zoiros KE. Simulation of all-optical logic XNOR gate based on quantum-dot semiconductor optical amplifiers with amplified spontaneous emission. Opt Quantum Electron. 2013;45:1213–21.10.1007/s11082-013-9742-9Search in Google Scholar
10. Kotb A, Zoiros KE. 1 Tb/s high quality factor NAND gate using quantum-dot semiconductor optical amplifiers in Mach–zehnder interferometer. J Comput Electron. 2014;13:555–61.10.1007/s10825-014-0567-ySearch in Google Scholar
11. Younis RM, Areed NF, Obayya SS. Fully integrated AND and OR optical logic gates. IEEE Photonics Technol Lett. 2014;26:1900–3.10.1109/LPT.2014.2340435Search in Google Scholar
12. Robinson S, Nakeeran R. Photonic crystal ring resonator based optical filters- from advances in photonic crystals: Passaro, V.M.N (ed.), InTech, 2013:1–22.10.5772/54533Search in Google Scholar
13. Ghorbanpour H, Makouei S. 2-channel all optical demultiplexer based on photonic crystal ring resonator. Front OptoElectron. 2013;6:224–7.10.1007/s12200-013-0322-1Search in Google Scholar
14. Djavid M, Abrishamian MS Multi-channel drop filters using photonic crystal ring resonators. Int J Light Electron Opt. 2012;123:167–70.10.1016/j.ijleo.2011.04.001Search in Google Scholar
15. Mahmoud YM, Bassou G, Taalbi A. A new optical add-drop filter based on two-dimensional photonic crystal ring resonator. Int J Light Electron Opt. 2012;124:2864–7.10.1016/j.ijleo.2012.08.072Search in Google Scholar
16. Badaoui H, Feham M, Abri M. Photonic crystal band pass resonant filters design using the two dimensional FDTD method. Int J Comput Sci Issues. 2011;8:127–32.Search in Google Scholar
17. Kumar A, Kumar S, Raghuwansi SK. Implementation of XOR/XNOR and AND logic gates by using Mach-Zehnder interferometers. Opt Int J Light Electron Opt. 2014;125:5764–7.10.1016/j.ijleo.2014.07.037Search in Google Scholar
18. Bchir R, Bardaoui A. Design of silicon-based two-dimensional photonic integrated circuits: XOR gate. IET OptoElectron. 2013;7:25–9.10.1049/iet-opt.2012.0016Search in Google Scholar
19. Susan Christina X, Kalibilan AP. Design of optical logic gates using self-collimated beams in photonic crystals. Photonic Sens. 2012;2:173–9.10.1007/s13320-012-0054-7Search in Google Scholar
20. Lin WP, Hsu YF, Kuo HL. Design of optical NOR logic gates using two dimensional photonic crystals. J Mod Phys. 2014;2:144–7.10.11648/j.ajmp.20130203.18Search in Google Scholar
21. Mohammadi S, Absalan H. All optical NAND gate based on nonlinear photonic crystal ring resonator. Inf Process Agric. 2016;3:119–23.10.1016/j.inpa.2016.04.002Search in Google Scholar
22. Rani P, Kalra Y. Design of all optical logic gates in photonic crystal waveguide. Opt Int J Electron Opt. 2015;126:950–5.10.1016/j.ijleo.2015.03.003Search in Google Scholar
23. Noshad M, Abbasi A, Ranjbar R, Kheradmand R. Novel all-optical logic gates based on photonic crystal structure. International Symposium on Optics and its Applications, 350, 2012:1–610.1088/1742-6596/350/1/012007Search in Google Scholar
24. Kabilan AP, Christina SX, Caroline EP. Photonic crystal based all optical OR and XOR logic gates, second international conference on computing. Commun Networking Technol. 2010;1:1–4.10.1109/ICCCNT.2010.5591766Search in Google Scholar
25. Danaie M, Kaatizian H. Design and simulation of all-optical photonic crystal AND gate using nonlinear Kerr effect. Opt Quantum Electron. 2012;44:27–34.10.1007/s11082-011-9527-ySearch in Google Scholar
26. Ghadran M, Birjandi MA. Concurrent implementation of all-optical half adder and AND & XOR logic gates based on nonlinear photonic crystal. Opt Quantum Electron. 2013;45:1027–36.10.1007/s11082-013-9713-1Search in Google Scholar
27. Mehdizadeh F, Soroosh M. Designing of all optical NOR gate based on photonic crystal. Indian J Pure Appl Phys. 2015;54:35–9.Search in Google Scholar
28. Enaul Haq S, Nakkeeran R. Improved design of all-optical photonic crystal logic gates using T shaped waveguide. Opt Quantum Electron. 2016;48:1–15.10.1007/s11082-015-0279-ySearch in Google Scholar
29. Enaul Haq S, Nakkeeran R. Multi-mode interference based photonic crystal logic gates with simple structure and improved contrast ratio. Photonic Network Comput. 2017;34:140–8.10.1007/s11107-016-0683-7Search in Google Scholar
30. Rani P, Fatima S, Karla Y. Realization of all optical logic gates using universal NAND gates on photonic crystal platform. Superlattices Microstruct. 2017;109:619–25.10.1016/j.spmi.2017.05.046Search in Google Scholar
31. Mehdizadeh F, Sooroosh M, Banaei HA. Proposal for 4-to-2encoder based on photonic crystals. IET OptoElectron. 2017;11:29–35.10.1049/iet-opt.2016.0022Search in Google Scholar
32. Khosravi S, Zavvari M. Design and analysis of integrated all –optical 2×4 decoder based on 2D photonic crystal. Photonic Network Comput. 2018;35:122–8.10.1007/s11107-017-0724-xSearch in Google Scholar
33. Serajmohammad S, Alipour H, Mehindeh F. Proposal for realizing an all-optical half adder based on photonic crystals. Appl Opt. 2018;57:1617–21.10.1364/AO.57.001617Search in Google Scholar PubMed
34. Alipour-Banaei H, Seif-Dargahi H. Photoniccrystal based 1-bit full-adder optical circuit by using ring resonators in a nonlinear structure. Photonics Nanostruct Fundam Appl. 2017;24:29–34.10.1016/j.photonics.2017.03.001Search in Google Scholar
35. Jayabarathan JK, Subhalakshmi G, Robinson S. Performance evaluation of two dimensional photonic crystal based all optical AND/OR logic gates. J Opt Commun. 2018.10.1515/joc-2018-0105Search in Google Scholar
36. Haq Shaik E, Rangaswamy N. Realization of all-optical NAND and NOR logic functions with photonic crystal based NOT, OR and AND gates using De Morgan’s theorem. J Opt. 2018;47:8–21.10.1007/s12596-017-0441-ySearch in Google Scholar
37. Mohebzadeh-Bahabady A, Olyaee S. All-optical NOT and XOR logic gates using photonic crystal nano-resonator and based on an interference effect. IET OptoElectron. 2018;12:191–5.10.1049/iet-opt.2017.0174Search in Google Scholar
38. Belhadj W, Saidani N, Abdelmalek F. All-optical logic gates based on coupled heterostructue waveguide in two dimentional photonic crystal. Optik. 2018;168:237–43.10.1016/j.ijleo.2018.04.051Search in Google Scholar
39. Kim JY, Kang JM, Kim TY, Han SK. 10Gbit/s all optical logic gates with XOR, NOR, OR and NAND functions using SOA-MZI structures. Electron Lett. 2006;42:303–4.10.1049/el:20063501Search in Google Scholar
40. Enaulhaq S, Nakkeeran R. Design of photonic crystal based all-optical AND gate using T-shaped waveguide. J Mod Opt. 2015;63:941–9.10.1080/09500340.2015.1111455Search in Google Scholar
© 2019 Walter de Gruyter GmbH, Berlin/Boston
Articles in the same Issue
- Frontmatter
- Amplifiers
- Performance Investigate and Analysis of 96 × 10 Gbps DWDM System Using Suitable Rating from Optical Amplifiers
- Devices
- Design and Analysis of 3-Input NAND/NOR/XNOR Gate Based on 2D Photonic Crystals
- All-Optical Switching Device Using Plasmonic Mach-Zehnder Interferometer Structure
- Fibers
- Theoretical Assessment of a Porous Core Photonic Crystal Fiber for Terahertz Wave Propagation
- Networks
- Method and Algorithm for Topology Automatic Discovery in Complicated Passive Optical Network Architecture
- The Engagement of Hybrid Ultra High Space Division Multiplexing with Maximum Time Division Multiplexing Techniques for High-Speed Single-Mode Fiber Cable Systems
- Hybrid Algorithm Based Effective Light Trail Creation in an Optical Networks
- Adaptive Scheduling Mechanism with Variable Bit Rate Traffic in EPON
- A Novel Implementation of TCP Vegas by UsingA Fuzzy-Threshold Base Algorithm to Improve Performance of Optical Networks
- Improving Performance of Optical Networks by a Probable Approach
- Systems
- UltraHigh Bit-Rate Hybrid DWDM Optical System Design Using DP-QPSK Modulation
- Performance Limits of FSO Based SAC-OCDMA System Under Weather Conditions
- Performance Appraisal of Sigma Delta Modulated Radio over Fiber System
- Behavior study of EDEU optical code for FE-OCDMA system
- Performances enhancement of underwater wireless optical communications (UWOC) using pulse position modulation
- Theory
- Design and Simulation of OFDM for BPSK, QPSK and QAM with Peak Power Reduction Using Clipping Technique
Articles in the same Issue
- Frontmatter
- Amplifiers
- Performance Investigate and Analysis of 96 × 10 Gbps DWDM System Using Suitable Rating from Optical Amplifiers
- Devices
- Design and Analysis of 3-Input NAND/NOR/XNOR Gate Based on 2D Photonic Crystals
- All-Optical Switching Device Using Plasmonic Mach-Zehnder Interferometer Structure
- Fibers
- Theoretical Assessment of a Porous Core Photonic Crystal Fiber for Terahertz Wave Propagation
- Networks
- Method and Algorithm for Topology Automatic Discovery in Complicated Passive Optical Network Architecture
- The Engagement of Hybrid Ultra High Space Division Multiplexing with Maximum Time Division Multiplexing Techniques for High-Speed Single-Mode Fiber Cable Systems
- Hybrid Algorithm Based Effective Light Trail Creation in an Optical Networks
- Adaptive Scheduling Mechanism with Variable Bit Rate Traffic in EPON
- A Novel Implementation of TCP Vegas by UsingA Fuzzy-Threshold Base Algorithm to Improve Performance of Optical Networks
- Improving Performance of Optical Networks by a Probable Approach
- Systems
- UltraHigh Bit-Rate Hybrid DWDM Optical System Design Using DP-QPSK Modulation
- Performance Limits of FSO Based SAC-OCDMA System Under Weather Conditions
- Performance Appraisal of Sigma Delta Modulated Radio over Fiber System
- Behavior study of EDEU optical code for FE-OCDMA system
- Performances enhancement of underwater wireless optical communications (UWOC) using pulse position modulation
- Theory
- Design and Simulation of OFDM for BPSK, QPSK and QAM with Peak Power Reduction Using Clipping Technique