Acta Optica Sinica, Volume. 42, Issue 2, 0206005(2022)
Resonance Modes and Influencing Factors of Micro Sensing Unit on Fiber End Face
[1] Vaiano P, Carotenuto B, Pisco M et al. Lab on fiber technology for biological sensing applications[J]. Laser & Photonics Reviews, 10, 922-961(2016).
[2] Teixeira J G V, Leite I T, Silva S et al. Advanced fiber-optic acoustic sensors[J]. Photonic Sensors, 4, 198-208(2014).
[3] Ricciardi A, Crescitelli A, Vaiano P et al. Lab-on-fiber technology: a new vision for chemical and biological sensing[J]. The Analyst, 140, 8068-8079(2015).
[4] Consales M, Ricciardi A, Crescitelli A et al. Lab-on-fiber technology: toward multifunctional optical nanoprobes[J]. ACS Nano, 6, 3163-3170(2012).
[5] Pisco M, Cusano A. Lab-on-fiber technology: a roadmap toward multifunctional plug and play platforms[J]. Sensors, 20, E4705(2020).
[6] Kostovski G, Stoddart P R, Mitchell A. The optical fiber tip: an inherently light-coupled microscopic platform for micro- and nanotechnologies[J]. Advanced Materials, 26, 3798-3820(2014).
[7] Liberale C, Minzioni P, Bragheri F et al. Miniaturized all-fibre probe for three-dimensional optical trapping and manipulation[J]. Nature Photonics, 1, 723-727(2007).
[8] Chen W B, Han W, Abeysinghe D C et al. Generating cylindrical vector beams with subwavelength concentric metallic gratings fabricated on optical fibers[J]. Journal of Optics, 13, 015003(2011).
[9] Quero G, Vaiano P, Fienga F et al. A novel lab-on-fiber radiation dosimeter for ultra-high dose monitoring[J]. Scientific Reports, 8, 17841(2018).
[10] Kim H T, Yu M. Lab-on-fiber nanoprobe with dual high-Q Rayleigh anomaly-surface plasmon polariton resonances for multiparameter sensing[J]. Scientific Reports, 9, 1922(2019).
[11] Luo X G. Principles of electromagnetic waves in metasurfaces[J]. Science China Physics, Mechanics & Astronomy, 58, 594201(2015).
[12] Hao J M, Wang J, Liu X L et al. High performance optical absorber based on a plasmonic metamaterial[J]. Applied Physics Letters, 96, 251104(2010).
[13] Lu X Y, Wan R G, Zhang T Y. Metal-dielectric-metal based narrow band absorber for sensing applications[J]. Optics Express, 23, 29842-29847(2015).
[14] Giaquinto M, Ricciardi A, Cutolo A et al. Lab-on-fiber plasmonic probes for ultrasound detection: a comparative study[J]. Journal of Lightwave Technology, 34, 5189-5198(2016).
[15] Luo X, Zhai X, Wang L L et al. Enhanced dual-band absorption of molybdenum disulfide using a plasmonic perfect absorber[J]. Optics Express, 26, 11658-11666(2018).
[16] Sultanova N, Kasarova S, Nikolov I. Dispersion properties of optical polymers[J]. Acta Physica Polonica A, 116, 585-587(2009).
[17] Johnson P B, Christy R W. Optical constants of the noble metals[J]. Physical Review B, 6, 4370-4379(1972).
[18] Malitson I H. Interspecimen comparison of the refractive index of fused silica[J]. Journal of the Optical Society of America, 55, 1205-1209(1965).
[19] Barnes W L, Murray W A, Dintinger J et al. Surface plasmon polaritons and their role in the enhanced transmission of light through periodic arrays of subwavelength holes in a metal film[J]. Physical Review Letters, 92, 107401(2004).
[20] Bai C Y, Chen J, Zhang Y X et al. Shift of the surface plasmon polariton interference pattern in symmetrical arc slit structures and its application to Rayleigh metallic particle trapping[J]. Optics Express, 28, 21210-21219(2020).
[21] Cao Z Q[M]. Guided wave optics, 127-165(2007).
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Xiangjie Jia, Pengfei Hao, Min Li, Xiaoyan Wen, Haifei Lu. Resonance Modes and Influencing Factors of Micro Sensing Unit on Fiber End Face[J]. Acta Optica Sinica, 2022, 42(2): 0206005
Category: Fiber Optics and Optical Communications
Received: May. 24, 2021
Accepted: Aug. 16, 2021
Published Online: Dec. 29, 2021
The Author Email: Lu Haifei (haifeilv@whut.edu.cn)