Optical Communication Technology, Volume. 48, Issue 4, 47(2024)
Multi-band Terahertz 4x2 encoder based on two-dimensional photonic crystal
[1] [1] PIESIEWICZ R, KLEINE-OSTMANN T, KRUMBHOLZ N, et al.Short-range ultra-broadband terahertz communications: concepts and perspectives[J]. IEEE Antennas and Propagation Magazine, 2007, 49(6): 24-39.
[3] [3] TRIBE W R, NEWNHAM D A, TADAY P F. Hidden object detection:security applications of terahertz technology[C]//SPIE. Proceedings of Terahertz and Gigahertz Electronics and Photonics III. San Jose: SPIE, 2004:168-176.
[4] [4] PICKWELL E, WALLACE V P. Biomedical applications of terahertztechnology[J]. Journal of Physics D Applied Physics, 2006, 39(17): R301-R310.
[5] [5] SIEGEL P H. Terahertz technology in biology and medicine [J]. IEEEtransactions on microwave theory techniques, 2004, 52(10): 2438-2447.
[9] [9] YABLONOVITCH E. Inhibited spontaneous emission in solid-statephysics and electronics[J]. Physical Review Letters, 1987, 58 (20): 2059-2062.
[10] [10] LEE K Y, YANG Y C, LIN Y J, et al. The designs of 4 ×2 encoderbased on photonic crystals [C]//SPIE. Proceedings of Passive Componentsand Fiber-based Devices VI. Shanghai: Optica Publishing Group, 2009: 1-2.
[11] [11] RAJASEKAR R, RAJA G T, JAYABARATHAN J K, et al. Highspeed nano-optical encoder using photonic crystal ring resonator[J]. Photonic Network Communications, 2020, 40(1): 1-9.
[12] [12] NAGHIZADE S, KHOSHSIMA H. Low input power an all optical 4×2encoder based on triangularlattice shape photonic crystal [J].Journal of Optical Communications, 2018, 42(1): 17-24.
[13] [13] LATHA K, ARUNKUMAR R, PRABHA K R, et al. Performance analysis of all optical 4×2 and 8×3 encoder using two dimensional photoniccrystals waveguides[J]. Silicon, 2021, 14(7): 1-14.
[14] [14] MOSTAFA T S, MOHAMMED N A, EL-RABAIE E S M. Ultracompact ultrafast-switching-speed all-optical 4 ×2 encoder based on photoniccrystal[J]. Journal of Computational Electronics, 2019, 18(1): 1-14.
[15] [15] ALIPOUR-BANAEI H, RABATI M G, ABDOLLAHZADEH-BADELBOU P, et al. Application of self-collimated beams to realization of all optica photonic crystal encoder[J]. Physica E: Low-dimensional Systems and Nanostructures, 2016, 75: 77-85.
[16] [16] HASANGHOLIZADEH-KASHTIBAN M, SABBAGHI-NADOOSHANR, ALIPOUR-BANAEIH.Anovelallopticalreversible4×2encoderbased onphotonic crystals[J]. Optik, 2015, 126(20): 2368-2372.
[17] [17] SIAMAK G, MAHDI Z. Design and analysis of all-optical 4-2 binaryencoder based on photonic crystal[J].Optical&QuantumElectronics, 2017, 49(9): 302-302.
[19] [19] MOHEBZADEH-BAHABADY A, OLYAEE S. All-optical NOT andXOR logic gates using photonic crystal nano-resonator and based on an interference effect[J]. IET Optoelectronics, 2018, 12(4): 191-195.
[20] [20] MOSTAFA T S, MOHAMMED N A, EL-RABAIE E M. Ultra-Highbit rate all-optical AND/OR logic gates based on photonic crystal with multi-wavelength simultaneous operation [J]. Journal of Modern Optics, 2019,66(9): 1005-1016.
[21] [21] WU C J, LIU C P, OUYANG Z B. Compact and low-power opticallogic NOT gate based on photonic crystal waveguides without optical amplifiers and nonlinear materials[J]. Applied Optics, 2012, 51(5): 680-685.
[22] [22] RANI P, KALRA Y, SINHA R K. Design of all optical logic gates inphotonic crystal waveguides[J]. Optik, 2015, 126(9-10): 950-955.
[23] [23] MOHEBZADEH-BAHABADY A, SAEED O. Designing an ultra-compact all-optical 4-to-2 encoderand investigating its optical power consumption[J]. Applied Optics, 2020, 59(8): 2409-2415.
Get Citation
Copy Citation Text
MENG Xu, LI Peili. Multi-band Terahertz 4x2 encoder based on two-dimensional photonic crystal[J]. Optical Communication Technology, 2024, 48(4): 47
Category:
Received: Jul. 8, 2023
Accepted: --
Published Online: Oct. 11, 2024
The Author Email: