J. Eur. Opt. Society-Rapid Publ. 22, 23( 2026) 241
23 Miao Y, Peng Y, Xiang Y, Li M, Lu Y, Song Y, Dynamic Fano resonance in thin fiber taper coupled cylindrical microcavity, IEEE Photonics J. 8, 1 – 6( 2016). https:// doi. org / 10.1109 / JPHOT. 2016.2630316.
24 Zhao C, Gan X, Fang L, Han L, Chang K, Li D, Zhao J, Tunable Fano-like resonance enabled by coupling a microsphere with a fiber Mach – Zehnder interferometer, Appl. Opt. 55, 5756 – 5760( 2016). https:// doi. org / 10.1364 / AO. 55. 005756.
25 Gu B, Zhou Y, Yu X, Luan F, Fiber loop laser stabilized by Fano resonance in metallic grating coupled resonator, IEEE Photonics Technol. Lett. 28, 1597 – 1600( 2016). https:// doi. org / 10.1109 / LPT. 2016.2560239.
26 Liao J, Wu X, Liu L, Xu L, Fano resonance and improved sensing performance in a spectral-simplified optofluidic micro-bubble resonator by introducing selective modal losses, Opt. Express 24, 8574 – 8580( 2016). https:// doi. org / 10.1364 / OE. 24.008574.
27 Lin W, Zhang H, Chen S-C, Liu B, Liu Y-G, Microstructured optical fiber for multichannel sensing based on Fano resonance of the whispering gallery modes, Opt. Express 25, 994 – 1004( 2017). https:// doi. org / 10.1364 / OE. 25. 000994.
28 Miao Y, Li M, Song Y( 2017) Ring fiber lasers based on EITlike Fano resonances as a wavelength-selective element, IEEE Photonics Technol. Lett. 29, 1900 – 1902. https:// doi. org / 10.1109 / LPT. 2017.2755696.
29 Li S, Wang Y, Jiao R, Wang L, Duan G, Yu L, Fano resonances based on multimode and degenerate mode interference in plasmonic resonator system, Opt. Express 25, 3525 – 3533. https:// doi. org / 10.1364 / OE. 25.003525.
30 Zhang X, Yang Y, Shao H, Bai H, Pang F, Xiao H, Wang T, Fano resonances in cone-shaped inwall capillary based microsphere resonator, Opt. Express 25, 615 – 621( 2017). https:// doi. org / 10.1364 / OE. 25.000615.
31 Zhang K, Wang Y, Wu Y-H, Enhanced Fano resonance in a non-adiabatic tapered fiber coupled with a microresonator, Opt. Lett. 42, 2956 – 2959( 2017). https:// doi. org / 10.1364 / OL. 42.002956.
32 Pant R, Siva Shakthi A, Yelikar AB, Wideband excitation of Fano resonances and induced transparency by coherent interactions between Brillouin resonances, Sci. Rep. 8, 9175( 2018). https:// doi. org / 10.1038 / s41598-018-27444-8.
33 Zhang X, Bai H, Pan H, Wang J, Yan M, Xiao H, Wang T, In-line fiber michelson interferometer for enhancing the Q factor of cone-shaped inwall capillary coupled resonators, IEEE Photonics J. 10, 1 – 8( 2018). https:// doi. org / 10.1109 / JPHOT. 2018.2818715.
34 Jiang B, Gan X, Gu L, Hao Z, Wang S, Bi Z, Zhang L, Zhou K, Zhao J, Fano-like resonance in an all-in-fiber structure, IEEE Photonics J. 11, 1 – 7( 2019). https:// doi. org / 10.1109 / JPHOT. 2019.2936485.
35 Lu Y, Zhu X, Li J, Nie Y, Li M, Song Y, Tunable oscillating Fano spectra in a fiber taper coupled conical microresonator, IEEE Photonics J. 11, 1 – 7( 2019). https:// doi. org / 10.1109 / JPHOT. 2019.2924257.
36 Wang H, Xu R, Zhang J, Zhou W, Shen D, Ultranarrow filter based on Fano resonance in a single cylindrical microresonator for single-longitudinal-mode fiber lasers, Opt. Express 27, 22717 – 22726( 2019). https:// doi. org / 10.1364 / OE. 27.022717.
37 Tsai T-Y, Lee Z-C, Tsao H-X, Lin S-T, Minimization of Fresnel reflection by anti-reflection fiber Bragg grating inscribed at the fiber ends, Opt. Express 27, 11510 – 11515( 2019). https:// doi. org / 10.1364 / OE. 27.011510.
38 Li J, Lu Y, Cao L, Li M, Song Y, Continuously tunable fiber laser based on Fano resonance filter of thin-fiber-tapercoupled conical microresonator, Opt. Commun. 466, 125629( 2020). https:// doi. org / 10.1016 / j. optcom. 2020.125629.
39 Li A, Jiang B, Zhang P, Gan X, Hao Z, Hou Y, Zhang J, Li P, Zhao J, Realization and modulation of Fano-like lineshape in fiber Bragg gratings, J. Lightwave Technol. 39, 4419 – 4423( 2021). https:// opg. optica. org / jlt / abstract. cfm? uri = jlt-39- 13-4419.
40 ElKabbash M, Letsou T, Jalil SA, Hoffman N, Zhang J, Rutledge J, Lininger AR, Fann C-H, Hinczewski M, Strangi G, Guo C, Fano-resonant ultrathin film optical coatings, Nat. Nanotechnol. 16, 440 – 446( 2021). https:// doi. org / 10.1038 / s41565-020-00841-9.
41 Hu X, Zhang H, Lin W, Wang Y, Liu B, Laser-controlled Fano resonance sensing based on WGM coupling in eccentric hole fibers integrated with azobenzene, J. Lightwave Technol. 39, 320 – 327( 2021). https:// opg. optica. org / jlt / abstract. cfm? uri = jlt-39-1-320.
42 Li M, Wang R, Fiber Fabry-Perot interferometer-based Fano resonance coupler for whispering-gallery-mode resonators, IEEE Photonics Technol. Lett. 33, 585 – 588( 2021). https:// doi. org / 10.1109 / LPT. 2021.3076999.
43 Sun X, Lei Z, Zhong H, He C, Liu S, Meng Q, Liu Q, Chen S, Kong X, Yang T, A quasi-3D Fano resonance cavity on optical fiber end-facet for high signal-to-noise ratio dip-andread surface plasmon sensing, Light Adv. Manuf. 3, 665 – 675( 2022). https:// doi. org / 10.37188 / lam. 2022.046.
44 Jiang B, Zhang X, Li A, Hou Y, Hao Z, Gan X, Zhao J, Electrically induced dynamic Fano-like resonance in a graphene-coated fiber grating, Photon. Res. 10, 1238 – 1243( 2022). https:// doi. org / 10.1364 / PRJ. 453762.
45 Zhu J, Yin J, Optical-fibre characteristics based on Fano resonances and sensor application in blood glucose detection, Opt. Express 30, 26749 – 26760( 2022). https:// doi. org / 10.1364 / OE. 463427.
46 Hairol Aman MA, Ahmad Noorden AF, Ahmad Fajri FA, Abdul Kadir MZ, Bahari I, Danial WH, Daud S, Bahadoran M, Integrating Vernier spectrum with Fano resonance for high sensitivity of an all-optical sensor, J. Comput. Electron. 22, 276 – 287( 2023). https:// doi. org / 10.1007 / s10825-022- 01946-1.
47 Kudashkin DV, Khorev SV, Vatnik ID. Self-Stabilization by negative feedback of whispering gallery mode resonators based on optical fiber with active core. J. Lightwave Technol. 40, 7351 – 7357( 2022). https:// doi. org / 10.1109 / JLT. 2022.3201655.
48 Gan X, Ban Z, Gao F, Bo F, Zhang G, Xu J, Fano-like spectrum with a quasi-independent tuning of slope ratio based on HE mode components coupled whispering gallery mode, J. Lightwave Technol. 41, 2501 – 2505( 2023). https:// doi. org / 10.1109 / JLT. 2022.3231243.
49 Sakhabutdinov AZh, Agliullin TA, Hussein SMRH, Kuznetsov AA, Anfinogentov VI, Valeev BI, Fano-type resonance structures based on combination of fiber Bragg grating with Fabry-Perot interferometer, Karbala International Journal of Modern Science 9( 2023). https:// doi. org / 10.33640 / 2405- 609X. 3279.
50 Wang F, Lin S, Qu Y, Han X, Wei Y, Zhao Z, Zhang Y, Alloptical modulation of Fano-like resonances in apodized fiber Bragg grating using Er / Yb doped fiber, J. Phys. D: Appl.