Optoelectronics Letters, Volume. 21, Issue 7, 419(2025)
Research on resonant ring-modified photonic crystal line-defect slow-light waveguide
[1] [1] KUMAR A, TIAN Y J, NAVARATNA N, et al. Slow light topological photonics with counter-propagating waves and its active control on a chip[J]. Nature communications, 2024, 15(1): 926.
[2] [2] DOSS M P, JEYACHITRA R K. Quantum slow light annular photonic crystal ring resonator for optical network applications[J]. Optical and quantum electronics, 2024, 56(5): 741.
[3] [3] LI Y C, PAN Y Z, CHEN F, et al. Sensor and slow light based on plasmon-induced transparency in carbon nanotube rectangular split-ring resonator metamaterials[J]. Optical and quantum electronics, 2024, 56(6): 1003.
[4] [4] FU M C, LIAO J L, SHAO Z Z, et al. Finely engineered slow light photonic crystal waveguides for efficient wideband wavelength-independent higher-order temporal solitons[J]. Applied optics, 2016, 55(14): 3740-3745.
[5] [5] ZHANG Y, MA C J, JIN J S, et al. All-optical tunable slow light based on metal/semiconductor hybrid EIT metamaterial[J]. Journal of electronic materials, 2023, 52(1): 593-601.
[6] [6] KUMARI S, KUMAR V, REDDY S G, et al. Tunable ultraslow light propagation in ruby[J]. Optics communications, 2020, 437: 125913.
[7] [7] ZHOU B J, MA J G, WANG J, et al. Ultrafast group-velocity control via cascaded quadratic nonlinearities in optical parametric amplification[J]. Optics letters, 2018, 43(15): 3790-3793.
[8] [8] XU M Y, PENG L, BAI Y H, et al. Slow-light-enhanced Brillouin scattering with integrated Bragg grating[J]. Optics letters, 2024, 49(8): 2177-2180.
[9] [9] URANUS H P. Modeling of Mach-Zehnder interferometric sensors employing ring-resonator circuits for slow-light enhancement[J]. IEEE photonics journal, 2023, 15(6): 6802209.
[10] [10] BOUSCAL A, KEMICHE M, MAHAPATRA S, et al. Systematic design of a robust half-W1 photonic crystal waveguide for interfacing slow light and trapped cold atoms[J]. New journal of physics, 2024, 26(2): 023026.
[11] [11] HOCINI A, MAACHE M, KHEDROUCHE D. Modeling and simulation of optimized photonic crystal waveguide for slow-light enhancement[J]. Journal of physics conference series, 2020, 1492(1): 012005.
[12] [12] ZHU K T, YANG H X, DU H. Slow light tuning in annular slotted photonic crystal waveguide with incoming polymer[J]. Journal of physics: conference series, 2022, 2109(1): 012008.
[13] [13] PAVAN V D R, ROY S. Exploring the slow light features of lattice shifted twist induced photonic crystal waveguides with ring like holes[J]. IETE journal of research, 2023, 69(10): 6787-6793.
[14] [14] ZHANG Y D, WANG L P, FAN H L, et al. Ultra-slow light with high normalized delay-bandwidth product and refractive-index sensing in photonic crystal coupled-cavity waveguide[J]. Optics communications, 2022, 523: 128721.
[15] [15] PATIL M C, ARREGUI G, MECHLENBORG M, et al. Observation of slow light in glide-symmetric photonic-crystal waveguides[J]. Optics express, 2022, 30(8): 12565-12575.
[16] [16] FERRANDO A, SILVESTRE E, ANDRES P, et al. Designing the properties of dispersion-flattened photonic crystal fibers[J]. Optics express, 2001, 9(13): 687-697.
[17] [17] ZHAI Y, TIAN H P, JI Y F. Slow light property improvement and optical buffer capability in ring-shape-hole photonic crystal waveguide[J]. Journal of lightwave technology, 2011, 29(20): 3083-3090.
[18] [18] BABA T. Slow light in photonic crystals[J]. Nature photonics, 2008, 2(8): 465-473.
[19] [19] JANNESARI R, GRILLE T, STOCKER G, et al. Design of a narrow band filter based on a photonic crystal cavity for CO2 sensing application[J]. Sensors, 2023, 23(10): 4958.
[20] [20] FRANDSEN L H, LAVRINENKO A V, FAGE-PEDERSEN J, et al. Photonic crystal waveguides with semi-slow light and tailored dispersion properties[J]. Optics express, 2006, 14(20): 9444-9450.
[21] [21] DAGHOOGHI T, SOROOSH M, ANSARI A K. Low-power all-optical switch based on slow light photonic crystal[J]. Photonic network communications, 2022, 43(3): 177-184.
[22] [22] MA J, JIANG C. Demonstration of ultraslow modes in asymmetric line-defect photonic crystal waveguides[J]. IEEE photonics technology letters, 2008, 20(14): 1237-1239.
[23] [23] WU R, MA Y Y, LI L F. Slow light transmission of photonic crystal waveguide with wide bandwidth and large normalized delay bandwidth product[J]. Laser & optoelectronics progress, 2021, 58(7): 0723002. (in Chinese)
Get Citation
Copy Citation Text
LIU Qianzhen, MA Chengju, LI Yan. Research on resonant ring-modified photonic crystal line-defect slow-light waveguide[J]. Optoelectronics Letters, 2025, 21(7): 419
Received: Apr. 18, 2024
Accepted: Jul. 24, 2025
Published Online: Jul. 24, 2025
The Author Email: