Chinese Journal of Lasers, Volume. 51, Issue 5, 0510002(2024)
Research of Non‑Contact Current Sensor Based on Ultra‑High Q‑Factor Whispering‑Gallery Mode Microcapillary Resonator
[1] Ioppolo T, Ötügen V, Ayaz U. Development of whispering gallery mode polymeric micro-optical electric field sensors[J]. Journal of Visualized Experiments, 71, 50199(2013).
[2] Huang D, Srinivasan S, Bowers J E. Compact Tb doped fiber optic current sensor with high sensitivity[J]. Optics Express, 23, 29993-29999(2015).
[3] Vahala K J. Optical microcavities[J]. Nature, 424, 839-846(2003).
[4] Ye S F, Fang Y T. Blood glucose sensor based on parity-time symmetry coupled cavities[J]. Chinese Journal of Lasers, 49, 0310002(2022).
[5] Fan Y R, Xiao J L, Yang Y D et al. Electrical aging test and lifetime analysis of whispering-gallery-mode micro-cavity lasers[J]. Chinese Journal of Lasers, 49, 0601001(2022).
[6] Wan H D, Chen J J, Wan C et al. Optofluidic microcapillary biosensor for label-free, low glucose concentration detection[J]. Biomedical Optics Express, 10, 3929-3937(2019).
[7] Ren L Q, Wu X, Li M et al. Ultrasensitive label-free coupled optofluidic ring laser sensor[J]. Optics Letters, 37, 3873-3875(2012).
[8] Lin W, Miao Y P, Zhang H et al. Fiber-optic in-line magnetic field sensor based on the magnetic fluid and multimode interference effects[J]. Applied Physics Letters, 103, 3285-3287(2013).
[9] Deng M, Huang C, Liu D H et al. All fiber magnetic field sensor with ferrofluid-filled tapered microstructured optical fiber interferometer[J]. Optics Express, 23, 20668-20674(2015).
[10] Luo M D, Yang Q, Huang L Y et al. Non-contact current sensor based on micro-ring resonator[J]. Acta Optica Sinica, 41, 1228001(2021).
[11] Foreman M R, Swaim J D, Vollmer F. Whispering gallery mode sensors[J]. Advances in Optics and Photonics, 7, 168-240(2015).
[12] Shang C L, Tang J, Pi H L et al. Temperature coefficient of high-Q microsphere cavity[J]. Chinese Journal of Lasers, 42, 0302005(2015).
[13] Ge K, Niu B, Liu F Y et al. Electrically tunable WGM lasing in a metal-dielectric core-shell hybrid microcavity[J]. Applied Physics Letters, 120, 232201(2022).
[14] Rosensweig R E. Heating magnetic fluid with alternating magnetic field[J]. Journal of Magnetism and Magnetic Materials, 252, 370-374(2002).
[15] Habib A H, Ondeck C L, Chaudhary P et al. Evaluation of iron-cobalt/ferrite core-shell nanoparticles for cancer thermotherapy[J]. Journal of Applied Physics, 103, 07A307(2008).
[16] Fan H B, Fan H W, Fan H L. Multiple Fano resonance refractive index sensor based on a plasmonic metal-insulator-metal based Taiji resonator[J]. Journal of the Optical Society of America B, 39, 32-39(2021).
[17] Wang M Y, Meng L J, Jin X Y et al. Selective excitation of whispering-gallery modes and Fano resonance in a high-Q micro-capillary resonator with cleaned-up spectrum[J]. Applied Physics Express, 12, 062003(2019).
[18] Zamora V, Díez A, Andrés M V et al. Refractometric sensor based on whispering-gallery modes of thin capillaries[J]. Optics Express, 15, 12011-12016(2007).
[19] Liao J, Wu X, Liu L Y et al. Fano resonance and improved sensing performance in a spectral-simplified optofluidic micro-bubble resonator by introducing selective modal losses[J]. Optics Express, 24, 8574-8580(2016).
Get Citation
Copy Citation Text
Jianpeng Hu, Minggang Chai, Mengyu Wang, Caijun Xue, Chengfeng Xie, Qinggui Tan, Bin Wei, Lingfeng Wu, Tao Wu, Yanjun Fu. Research of Non‑Contact Current Sensor Based on Ultra‑High Q‑Factor Whispering‑Gallery Mode Microcapillary Resonator[J]. Chinese Journal of Lasers, 2024, 51(5): 0510002
Category: remote sensing and sensor
Received: Jun. 8, 2023
Accepted: Aug. 7, 2023
Published Online: Mar. 5, 2024
The Author Email: Chai Minggang (mgchai@nchu.edu.cn), Wang Mengyu (mengyu@nchu.edu.cn)
CSTR:32183.14.CJL230899