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Erschienen in: Optical and Quantum Electronics 5/2023

01.05.2023

Ultra-compact and low delay time all optical half adder based on photonic crystals

verfasst von: Fariborz Parandin

Erschienen in: Optical and Quantum Electronics | Ausgabe 5/2023

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Abstract

In this paper, an optical half adder is designed using photonic crystals. One of the features of this half adder is its small size. In the design of this structure, it has been tried to have a small size, shorter delay and high contrast ratio so that it can be used in the design of optical integrated circuits. For the sum and carry outputs, the obtained contrast ratio in the designed half adder is 15.4 dB and 7.4 dB, respectively. In addition, the proposed structure has a size of 70 µm2. The small size of this structure and the use of simple point defects, have caused the maximum delay time of this structure to be reduced to 0.07 ps. Due to these characteristics, this structure is suitable for high-speed optical integrated circuits.

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Literatur
Zurück zum Zitat Adibi, S., Amin Honarvar,M., Lalbakhsh, A.: Gain enhancement of wideband circularly polarized UWB antenna using FSS, Radio Sci 56 e2020RS007098 (2021) Adibi, S., Amin Honarvar,M., Lalbakhsh, A.: Gain enhancement of wideband circularly polarized UWB antenna using FSS, Radio Sci 56 e2020RS007098 (2021)
Zurück zum Zitat Askarian, A., Akbarizadeh, G.: A novel proposal for all optical 2×4 decoder based on photonic crystal and threshold switching method. Opt Quant Electron 54, 84 (2022)CrossRef Askarian, A., Akbarizadeh, G.: A novel proposal for all optical 2×4 decoder based on photonic crystal and threshold switching method. Opt Quant Electron 54, 84 (2022)CrossRef
Zurück zum Zitat Askarian, A., Akbarizadeh, G., Fartash, M.: A novel proposal for all optical half-subtractor based on photonic crystals. Opt. Quantum Electron. 51(8), 264–272 (2019a)CrossRef Askarian, A., Akbarizadeh, G., Fartash, M.: A novel proposal for all optical half-subtractor based on photonic crystals. Opt. Quantum Electron. 51(8), 264–272 (2019a)CrossRef
Zurück zum Zitat Askarian, A., Akbarizadeh, G., Fartash, M.: All-optical half-subtractor based on photonic crystals. Appl. Opt. 58, 5931–5935 (2019b)CrossRefADS Askarian, A., Akbarizadeh, G., Fartash, M.: All-optical half-subtractor based on photonic crystals. Appl. Opt. 58, 5931–5935 (2019b)CrossRefADS
Zurück zum Zitat Askarian, A., Akbarizadeh, G., Fartash, M.: An all-optical half subtractor based on Kerr effect and photonic crystals. Optik 207, 164424 (2020)CrossRefADS Askarian, A., Akbarizadeh, G., Fartash, M.: An all-optical half subtractor based on Kerr effect and photonic crystals. Optik 207, 164424 (2020)CrossRefADS
Zurück zum Zitat Cheraghi, F., Soroosh, M., Akbarizadeh, G.: An ultra-compact all optical full adder based on nonlinear photonic crystal resonant cavities. Superlattices Microstruct. 113, 359–365 (2018)CrossRefADS Cheraghi, F., Soroosh, M., Akbarizadeh, G.: An ultra-compact all optical full adder based on nonlinear photonic crystal resonant cavities. Superlattices Microstruct. 113, 359–365 (2018)CrossRefADS
Zurück zum Zitat Farmani, A.: Quantum-dot semiconductor optical amplifier: performance and application for optical logic gates. Majlesi J. Telecommun. Dev. 6(3), 93–97 (2017) Farmani, A.: Quantum-dot semiconductor optical amplifier: performance and application for optical logic gates. Majlesi J. Telecommun. Dev. 6(3), 93–97 (2017)
Zurück zum Zitat Farmani, A., Mir, A., Irannejad, M.: 2D-FDTD simulation of ultra-compact multifunctional logic gates with nonlinear photonic crystal. J. Opt. Soc. Am. B 36(4), 811–818 (2019)CrossRefADS Farmani, A., Mir, A., Irannejad, M.: 2D-FDTD simulation of ultra-compact multifunctional logic gates with nonlinear photonic crystal. J. Opt. Soc. Am. B 36(4), 811–818 (2019)CrossRefADS
Zurück zum Zitat Hadei, M., Dadashzadeh, G., Torabi, Y., Lalbakhsh, A.: Terahertz beamforming network with a nonuniform contour. Appl. Opt. 61(4), 1087–1096 (2022)CrossRefADS Hadei, M., Dadashzadeh, G., Torabi, Y., Lalbakhsh, A.: Terahertz beamforming network with a nonuniform contour. Appl. Opt. 61(4), 1087–1096 (2022)CrossRefADS
Zurück zum Zitat Jalali-Azizpoor, M.R., Soroosh, M., Seifi-Kavian, Y.: Application of self-collimated beams in realizing all-optical photonic crystal-based half-adder. Photon Netw Commun 36, 344–349 (2018)CrossRef Jalali-Azizpoor, M.R., Soroosh, M., Seifi-Kavian, Y.: Application of self-collimated beams in realizing all-optical photonic crystal-based half-adder. Photon Netw Commun 36, 344–349 (2018)CrossRef
Zurück zum Zitat Jamshidi, M.B., Siahkamari, H., Roshani, S., Roshani, S.: A compact Gysel power divider design using U-shaped and T-shaped resonators with harmonics suppression. Electromagnetics. 39(7), 491–504 (2019)CrossRef Jamshidi, M.B., Siahkamari, H., Roshani, S., Roshani, S.: A compact Gysel power divider design using U-shaped and T-shaped resonators with harmonics suppression. Electromagnetics. 39(7), 491–504 (2019)CrossRef
Zurück zum Zitat Jamshidi, M.B., Roshani, S., Talla, J., Roshani, S., Peroutka, Z.: Size reduction and performance improvement of a microstrip Wilkinson power divider using a hybrid design technique. Sci. Rep. 11, 7773 (2021)CrossRefADS Jamshidi, M.B., Roshani, S., Talla, J., Roshani, S., Peroutka, Z.: Size reduction and performance improvement of a microstrip Wilkinson power divider using a hybrid design technique. Sci. Rep. 11, 7773 (2021)CrossRefADS
Zurück zum Zitat Karambasti, B.M., Ghodrat, M., Ghorbani, G., Lalbakhsh, A., Behnia, M: Design methodology and multi-objective optimization of small-scale power-water production based on integration of Stirling engine and multi-effect evaporation desalination system. Desalination 526, 115542 (2022) Karambasti, B.M., Ghodrat, M., Ghorbani, G., Lalbakhsh, A., Behnia, M: Design methodology and multi-objective optimization of small-scale power-water production based on integration of Stirling engine and multi-effect evaporation desalination system. Desalination 526, 115542 (2022)
Zurück zum Zitat Karkhanehchi, M.M., Parandin, F., Zahedi, A.: Design of an all optical half-adder based on 2D photonic crystals. Photon. Netw. Commun. 33, 159–165 (2017)CrossRef Karkhanehchi, M.M., Parandin, F., Zahedi, A.: Design of an all optical half-adder based on 2D photonic crystals. Photon. Netw. Commun. 33, 159–165 (2017)CrossRef
Zurück zum Zitat Lalbakhsh, A., Mohamadpour, G., Roshani, S., Ami, M., Roshani, S., Sayem, A.S.M.D., Alibakhshikenari, M., Koziel, S.: Design of a compact planar transmission line for miniaturized rat-race coupler with harmonics suppression. IEEE Access 9, 129207–129217 (2021a)CrossRef Lalbakhsh, A., Mohamadpour, G., Roshani, S., Ami, M., Roshani, S., Sayem, A.S.M.D., Alibakhshikenari, M., Koziel, S.: Design of a compact planar transmission line for miniaturized rat-race coupler with harmonics suppression. IEEE Access 9, 129207–129217 (2021a)CrossRef
Zurück zum Zitat Lalbakhsh, A., Afzal, M.U., Hayat, T., Esselle, K.P., Manda, K.: All-metal wideband metasurface for near-field transformation of medium-to-high gain electromagnetic sources. Sci. Rep. 11(1), 1–9 (2021b)CrossRef Lalbakhsh, A., Afzal, M.U., Hayat, T., Esselle, K.P., Manda, K.: All-metal wideband metasurface for near-field transformation of medium-to-high gain electromagnetic sources. Sci. Rep. 11(1), 1–9 (2021b)CrossRef
Zurück zum Zitat Lalbakhsh, A., Simorangkir, R.B.V.B. N. Bayat-Makou, A.A. Kishk, K.P. Esselle, Advancements and artificial intelligence approaches in antennas for environmental sensing, Artificial Intelligence and Data Science in Environmental Sensing, 19–38, 2022 Lalbakhsh, A., Simorangkir, R.B.V.B. N. Bayat-Makou, A.A. Kishk, K.P. Esselle, Advancements and artificial intelligence approaches in antennas for environmental sensing, Artificial Intelligence and Data Science in Environmental Sensing, 19–38, 2022
Zurück zum Zitat Maleki, M.J., Mir, A., Soroosh, M.: Designing an ultra-fast all-optical full-adder based on nonlinear photonic crystal cavities. Opt Quant Electron 52, 196 (2020)CrossRef Maleki, M.J., Mir, A., Soroosh, M.: Designing an ultra-fast all-optical full-adder based on nonlinear photonic crystal cavities. Opt Quant Electron 52, 196 (2020)CrossRef
Zurück zum Zitat Maleki, M.J., Mir, A., Soroosh, M.: Design and analysis of a new compact all-optical full-adder based on photonic crystals. Optik 227, 166107 (2021a)CrossRefADS Maleki, M.J., Mir, A., Soroosh, M.: Design and analysis of a new compact all-optical full-adder based on photonic crystals. Optik 227, 166107 (2021a)CrossRefADS
Zurück zum Zitat Maleki, M.J., Mir, A., Soroosh, M.: Ultra-fast all-optical full-adder based on nonlinear photonic crystal resonant cavities. Photon. Netw. Commun. 41, 93–101 (2021b)CrossRef Maleki, M.J., Mir, A., Soroosh, M.: Ultra-fast all-optical full-adder based on nonlinear photonic crystal resonant cavities. Photon. Netw. Commun. 41, 93–101 (2021b)CrossRef
Zurück zum Zitat 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. 12(4), 191–195 (2018)CrossRef 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. 12(4), 191–195 (2018)CrossRef
Zurück zum Zitat Nagarajan, K., Malleswaran, M., Robinson, S.: High bit rate with ultracompact design of an all-optical half adder in two-dimensional photonic crystals. Opt. Eng. 61(6), 067102 (2022)CrossRefADS Nagarajan, K., Malleswaran, M., Robinson, S.: High bit rate with ultracompact design of an all-optical half adder in two-dimensional photonic crystals. Opt. Eng. 61(6), 067102 (2022)CrossRefADS
Zurück zum Zitat Naghizade, S., Saghaei, H.: A novel design of all-optical half adder using a linear defect in a square lattice rod-based photonic crystal microstructure. arXiv preprint arXiv, 2002.04535, (2020) Naghizade, S., Saghaei, H.: A novel design of all-optical half adder using a linear defect in a square lattice rod-based photonic crystal microstructure. arXiv preprint arXiv, 2002.04535, (2020)
Zurück zum Zitat Neisy, M., Soroosh, M., Ansari-Asl, K.: All optical half adder based on photonic crystal resonant cavities. Photon. Netw. Commun. 35, 245–250 (2018)CrossRef Neisy, M., Soroosh, M., Ansari-Asl, K.: All optical half adder based on photonic crystal resonant cavities. Photon. Netw. Commun. 35, 245–250 (2018)CrossRef
Zurück zum Zitat Olyaee, S., Taghipour, F.: Design of new square-lattice photonic crystal fibers for optical communication applications. Int. J. Phys. Sci. 6(18), 4405–4411 (2011) Olyaee, S., Taghipour, F.: Design of new square-lattice photonic crystal fibers for optical communication applications. Int. J. Phys. Sci. 6(18), 4405–4411 (2011)
Zurück zum Zitat Olyaee, S., Seifouri, M., Mohebzadeh-Bahabady, A., Sardari, M.: Realization of all-optical NOT and XOR logic gates based on interference effect with high contrast ratio and ultra-compacted size. Opt Quant Electron 50, 385 (2018)CrossRef Olyaee, S., Seifouri, M., Mohebzadeh-Bahabady, A., Sardari, M.: Realization of all-optical NOT and XOR logic gates based on interference effect with high contrast ratio and ultra-compacted size. Opt Quant Electron 50, 385 (2018)CrossRef
Zurück zum Zitat Pakrai, F., Soroosh, M., Ganji, J.: A novel proposal for an all optical combined half adder/subtractor. Opt. Quant. Electron. 54, 518 (2022)CrossRef Pakrai, F., Soroosh, M., Ganji, J.: A novel proposal for an all optical combined half adder/subtractor. Opt. Quant. Electron. 54, 518 (2022)CrossRef
Zurück zum Zitat Parandin, F.: Ultra-compact terahertz all-optical logic comparator on GaAs photonic crystal platform. Opt. Laser Technol. 144, 107399 (2021)CrossRef Parandin, F.: Ultra-compact terahertz all-optical logic comparator on GaAs photonic crystal platform. Opt. Laser Technol. 144, 107399 (2021)CrossRef
Zurück zum Zitat Parandin, F., Malmir, M.R.: Reconfigurable all optical half adder and optical XOR and AND logic gates based on 2D photonic crystals. Opt. Quant. Electron. 52, 56 (2020)CrossRef Parandin, F., Malmir, M.R.: Reconfigurable all optical half adder and optical XOR and AND logic gates based on 2D photonic crystals. Opt. Quant. Electron. 52, 56 (2020)CrossRef
Zurück zum Zitat Parandin, F., Sheykhian, A.: Design and simulation of a 2 × 1 all-optical multiplexer based on photonic crystals. Opt. Laser Technol. 151, 108021 (2022a)CrossRef Parandin, F., Sheykhian, A.: Design and simulation of a 2 × 1 all-optical multiplexer based on photonic crystals. Opt. Laser Technol. 151, 108021 (2022a)CrossRef
Zurück zum Zitat Parandin, F., Sheykhian, A.: Design of an all-optical half adder based on photonic crystal ring resonator. Opt. Quant. Electron. 54, 443 (2022b)CrossRef Parandin, F., Sheykhian, A.: Design of an all-optical half adder based on photonic crystal ring resonator. Opt. Quant. Electron. 54, 443 (2022b)CrossRef
Zurück zum Zitat Parandin, F., Kamarian, R., Jomour, M.: Optical 1-bit comparator based on two-dimensional photonic crystals. Appl. Opt. 60, 2275–2280 (2021a)CrossRefADS Parandin, F., Kamarian, R., Jomour, M.: Optical 1-bit comparator based on two-dimensional photonic crystals. Appl. Opt. 60, 2275–2280 (2021a)CrossRefADS
Zurück zum Zitat Parandin, F., Heidari, F., Rahimi, Z., Olyaee, S.: Two-dimensional photonic crystal biosensors: a review. Opt. Laser Technol. 144, 107397 (2021b)CrossRef Parandin, F., Heidari, F., Rahimi, Z., Olyaee, S.: Two-dimensional photonic crystal biosensors: a review. Opt. Laser Technol. 144, 107397 (2021b)CrossRef
Zurück zum Zitat Prabha, K.R., Kavitha, V., Robinson, S., Jayabharathan, J.K., Balamurugan, P.: Two-dimensional photonic crystal-based half adder: a review. J. Opt. 51, 415–436 (2022)CrossRef Prabha, K.R., Kavitha, V., Robinson, S., Jayabharathan, J.K., Balamurugan, P.: Two-dimensional photonic crystal-based half adder: a review. J. Opt. 51, 415–436 (2022)CrossRef
Zurück zum Zitat Rezaei, M.H., Boroumandi, R., Zarifkar, A., Farmani, A.: Nano-scale multifunctional logic gate based on graphene/hexagonal boron nitride plasmonic waveguides. IET Optoelectron. 14(1), 37–43 (2020)CrossRef Rezaei, M.H., Boroumandi, R., Zarifkar, A., Farmani, A.: Nano-scale multifunctional logic gate based on graphene/hexagonal boron nitride plasmonic waveguides. IET Optoelectron. 14(1), 37–43 (2020)CrossRef
Zurück zum Zitat Roshani, S., Jamshidi, M.B., Mohebi, F., Roshani, S.: Design and modeling of a compact power divider with squared resonators using artificial intelligence. Wirel. Pers. Commun. 117(3), 2085–2096 (2020)CrossRef Roshani, S., Jamshidi, M.B., Mohebi, F., Roshani, S.: Design and modeling of a compact power divider with squared resonators using artificial intelligence. Wirel. Pers. Commun. 117(3), 2085–2096 (2020)CrossRef
Zurück zum Zitat Sani, M.H., Tabrizi, A.A., Saghaei, H., et al.: An ultrafast all-optical half adder using nonlinear ring resonators in photonic crystal microstructure. Opt. Quant. Electron. 52, 107 (2020)CrossRef Sani, M.H., Tabrizi, A.A., Saghaei, H., et al.: An ultrafast all-optical half adder using nonlinear ring resonators in photonic crystal microstructure. Opt. Quant. Electron. 52, 107 (2020)CrossRef
Zurück zum Zitat Seifouri, M., Olyaee, S., Sardari, M., Mohebzadeh-Bahabady, A.: Ultra-fast and compact all-optical half adder using 2D photonic crystals. IET Optoelectron. 13(3), 139–143 (2019)CrossRef Seifouri, M., Olyaee, S., Sardari, M., Mohebzadeh-Bahabady, A.: Ultra-fast and compact all-optical half adder using 2D photonic crystals. IET Optoelectron. 13(3), 139–143 (2019)CrossRef
Zurück zum Zitat Seraj, Z., Soroosh, M., Alaei-Sheini, N.: Ultra-compact ultra-fast 1-bit comparator based on a two-dimensional nonlinear photonic crystal structure. Appl. Opt. 59, 811–816 (2020)CrossRefADS Seraj, Z., Soroosh, M., Alaei-Sheini, N.: Ultra-compact ultra-fast 1-bit comparator based on a two-dimensional nonlinear photonic crystal structure. Appl. Opt. 59, 811–816 (2020)CrossRefADS
Zurück zum Zitat Serajmohammadi, S., Alipour-Banaei, H., Mehdizadeh, F.: All optical decoder switch based on photonic crystal ring resonators. Opt Quant Electron 47, 1109–1115 (2015)CrossRefMATH Serajmohammadi, S., Alipour-Banaei, H., Mehdizadeh, F.: All optical decoder switch based on photonic crystal ring resonators. Opt Quant Electron 47, 1109–1115 (2015)CrossRefMATH
Zurück zum Zitat Serajmohammadi, S., Alipour-Banaei, H., Mehdizadeh, F.: Proposal for realizing an all-optical half adder based on photonic crystals. Appl. Opt. 57, 1617–1621 (2018)CrossRefADS Serajmohammadi, S., Alipour-Banaei, H., Mehdizadeh, F.: Proposal for realizing an all-optical half adder based on photonic crystals. Appl. Opt. 57, 1617–1621 (2018)CrossRefADS
Zurück zum Zitat Soma, S., Sonth, M.V., Gowre, S.C.: Tunable optical add/drop filter for CWDM systems using photonic crystal ring resonator. J. Electron. Mater. 48, 7460–7464 (2019)CrossRefADS Soma, S., Sonth, M.V., Gowre, S.C.: Tunable optical add/drop filter for CWDM systems using photonic crystal ring resonator. J. Electron. Mater. 48, 7460–7464 (2019)CrossRefADS
Zurück zum Zitat Sonth, M.V., Soma, S., Gowre, S.C., Biradar, N.: Modeling and optimization of optical half adder in two dimensional photonic crystals. J. Electron. Mater. 47, 4136–4139 (2018)CrossRefADS Sonth, M.V., Soma, S., Gowre, S.C., Biradar, N.: Modeling and optimization of optical half adder in two dimensional photonic crystals. J. Electron. Mater. 47, 4136–4139 (2018)CrossRefADS
Zurück zum Zitat Vahdati, A., Parandin, F.: Antenna patch design using a photonic crystal substrate at a frequency of 1.6 THz. Wirel. Personal Commun. 109, 2213–2219 (2019)CrossRef Vahdati, A., Parandin, F.: Antenna patch design using a photonic crystal substrate at a frequency of 1.6 THz. Wirel. Personal Commun. 109, 2213–2219 (2019)CrossRef
Metadaten
Titel
Ultra-compact and low delay time all optical half adder based on photonic crystals
verfasst von
Fariborz Parandin
Publikationsdatum
01.05.2023
Verlag
Springer US
Erschienen in
Optical and Quantum Electronics / Ausgabe 5/2023
Print ISSN: 0306-8919
Elektronische ISSN: 1572-817X
DOI
https://doi.org/10.1007/s11082-023-04603-4

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